<?xml version="1.0" encoding="UTF-8"?>
<?xml-stylesheet type="text/xsl" href="https://m2.mtmt.hu/xsl/gui3.xsl" ?>
<myciteResult>
  <serverUrl>https://m2.mtmt.hu/</serverUrl>
  <labelLang>eng</labelLang>
  <responseDate>2026-05-02 17:09</responseDate>
  <content>
    <publication>
      <otype>JournalArticle</otype>
      <mtid>34453979</mtid>
      <status>ADMIN_APPROVED</status>
      <published>true</published>
      <unhandledTickets>0</unhandledTickets>
      <deleted>false</deleted>
      <lastRefresh>2026-04-22T09:37:58.159+0000</lastRefresh>
      <lastModified>2026-04-10T10:54:16.590+0000</lastModified>
      <created>2023-12-30T12:58:01.789+0000</created>
      <creator>
        <snippet>true</snippet>
        <mtid>10030275</mtid>
        <familyName>Bálint</familyName>
        <givenName>Erika</givenName>
        <link>/api/author/10030275</link>
        <otype>Author</otype>
        <label>Erika Bálint (Szerves kémia)</label>
        <published>true</published>
        <oldId>10030275</oldId>
      </creator>
      <lastDuplumOK>2026-04-10T10:54:16.804+0000</lastDuplumOK>
      <lastDuplumSearch>2026-04-10T10:54:16.804+0000</lastDuplumSearch>
      <adminApproved>2024-06-18T13:04:33.402+0000</adminApproved>
      <adminApprover>
        <snippet>true</snippet>
        <mtid>10065569</mtid>
        <familyName>Pécsi</familyName>
        <givenName>Éva</givenName>
        <link>/api/admin/10065569</link>
        <otype>Admin</otype>
        <label>Éva Pécsi (MTMT Közp 2,3, admin)</label>
        <published>true</published>
      </adminApprover>
      <tempLockers>
        <otype>Admin</otype>
        <mtid>10063514</mtid>
        <link>/api/admin/10063514</link>
        <label>Katalin Mikola (MTMT 3, admin)</label>
        <familyName>Mikola</familyName>
        <givenName>Katalin</givenName>
        <published>true</published>
        <oldId>10063514</oldId>
        <snippet>true</snippet>
      </tempLockers>
      <tempLocked>2024-01-26T08:08:40.709+0000</tempLocked>
      <core>true</core>
      <publicationPending>false</publicationPending>
      <type>
        <snippet>true</snippet>
        <mtid>24</mtid>
        <code>24</code>
        <link>/api/publicationtype/24</link>
        <otype>PublicationType</otype>
        <label>Journal Article</label>
        <listPosition>1</listPosition>
        <published>true</published>
        <oldId>24</oldId>
        <otypeName>JournalArticle</otypeName>
      </type>
      <subType>
        <snippet>true</snippet>
        <mtid>10000059</mtid>
        <nameEng>Article</nameEng>
        <docType>
          <snippet>true</snippet>
          <mtid>24</mtid>
          <code>24</code>
          <link>/api/publicationtype/24</link>
          <otype>PublicationType</otype>
          <label>Journal Article</label>
          <listPosition>1</listPosition>
          <published>true</published>
          <oldId>24</oldId>
          <otypeName>JournalArticle</otypeName>
        </docType>
        <link>/api/subtype/10000059</link>
        <name>Szakcikk</name>
        <otype>SubType</otype>
        <label>Article (Journal Article)</label>
        <listPosition>101</listPosition>
        <published>true</published>
        <oldId>10000059</oldId>
      </subType>
      <category>
        <snippet>true</snippet>
        <mtid>1</mtid>
        <link>/api/category/1</link>
        <otype>Category</otype>
        <label>Scientific</label>
        <published>true</published>
        <oldId>1</oldId>
      </category>
      <firstAuthor>Rávai, Bettina</firstAuthor>
      <title>Flow chemical laboratory practice for undergraduate students: synthesis of paracetamol</title>
      <journal>
        <snippet>true</snippet>
        <sciIndexed>true</sciIndexed>
        <link>/api/journal/10024770</link>
        <reviewType>REVIEWED</reviewType>
        <label>JOURNAL OF FLOW CHEMISTRY 2062-249X 2063-0212</label>
        <published>true</published>
        <hungarian>true</hungarian>
        <oldId>10024770</oldId>
        <noIF>false</noIF>
        <mtid>10024770</mtid>
        <scopusIndexed>true</scopusIndexed>
        <pIssn>2062-249X</pIssn>
        <eIssn>2063-0212</eIssn>
        <otype>Journal</otype>
        <lang>FOREIGN</lang>
      </journal>
      <volume>14</volume>
      <issue>2</issue>
      <firstPage>409</firstPage>
      <lastPage>415</lastPage>
      <firstPageOrInternalIdForSort>409</firstPageOrInternalIdForSort>
      <pageLength>7</pageLength>
      <publishedYear>2024</publishedYear>
      <abstractText>Generally, chemical engineering students get well acquainted with the batch synthesis of various active pharmaceutical ingredients, however, only tiny focus is provided to undergraduates on the topic of flow chemistry. In this paper, we report that students participating in the chemical engineering BSc course at the Budapest University of Technology and Economics were encouraged to perform the flow synthesis of paracetamol, a common pain painkiller. Two different synthetic routes for the continuous production of paracetamol were investigated and compared the batch and flow methods. Thus, these experiments allowed the students to discover flow chemistry for themselves under supervision: how to set up a flow system, how to carry out a reaction continuously, and to experience the advantages of flow chemistry over batch synthesis. In addition, students also got familiar with in-line Fourier transform infrared spectroscopy, as one of the reactions was monitored in real-time.</abstractText>
      <fundings>
        <funding>
          <otype>Funding</otype>
          <mtid>2057184</mtid>
          <link>/api/funding/2057184</link>
          <label>Nemzeti Gyógyszerkutatási és Fejlesztési Laboratórium (PharmaLab)(RRF-2.3.1-21-2022-00015) Funder: NRDIO</label>
          <published>false</published>
          <snippet>true</snippet>
        </funding>
        <funding>
          <otype>Funding</otype>
          <mtid>2057183</mtid>
          <link>/api/funding/2057183</link>
          <label>Biológiailag aktív izatin- és xantén-származékok multikomponensű szintézise, a vegyületek ciklode...(FK142712) Funder: NR-DIO</label>
          <published>false</published>
          <snippet>true</snippet>
        </funding>
      </fundings>
      <digital>true</digital>
      <printed/>
      <sourceYear>2023</sourceYear>
      <foreignEdition>false</foreignEdition>
      <foreignLanguage>true</foreignLanguage>
      <fullPublication>true</fullPublication>
      <conferencePublication>false</conferencePublication>
      <nationalOrigin>true</nationalOrigin>
      <missingAuthor>false</missingAuthor>
      <oaType>GOLD</oaType>
      <oaCheckDate>2026-04-22</oaCheckDate>
      <oaFree>true</oaFree>
      <oaLink>https://doi.org/10.1007/s41981-023-00303-y</oaLink>
      <citationCount>2</citationCount>
      <citationCountUnpublished>0</citationCountUnpublished>
      <citationCountWoOther>2</citationCountWoOther>
      <independentCitCountWoOther>2</independentCitCountWoOther>
      <nationalOriginCitationCount>0</nationalOriginCitationCount>
      <foreignEditionCitationCount>1</foreignEditionCitationCount>
      <doiCitationCount>2</doiCitationCount>
      <wosCitationCount>2</wosCitationCount>
      <scopusCitationCount>2</scopusCitationCount>
      <wosScopusCitationCount>2</wosScopusCitationCount>
      <wosScopusCitationCountWoOther>2</wosScopusCitationCountWoOther>
      <wosScopusIndependentCitationCount>2</wosScopusIndependentCitationCount>
      <wosScopusIndependentCitationCountWoOther>2</wosScopusIndependentCitationCountWoOther>
      <independentCitationCount>2</independentCitationCount>
      <selfCitationCount>0</selfCitationCount>
      <unhandledCitationCount>0</unhandledCitationCount>
      <citingPubCount>2</citingPubCount>
      <independentCitingPubCount>2</independentCitingPubCount>
      <citingPubCountWoOther>2</citingPubCountWoOther>
      <independentCitingPubCountWoOther>2</independentCitingPubCountWoOther>
      <unhandledCitingPubCount>0</unhandledCitingPubCount>
      <citedPubCount>1</citedPubCount>
      <citedCount>1</citedCount>
      <pubStats>
        <types>
          <type>Folyóiratcikk</type>
          <typeEng>Journal Article</typeEng>
          <code>24</code>
          <count>2</count>
        </types>
        <types>
          <type>Könyvrészlet</type>
          <typeEng>Chapter in Book</typeEng>
          <code>25</code>
          <count>0</count>
        </types>
        <types>
          <type>Könyv</type>
          <typeEng>Book</typeEng>
          <code>23</code>
          <count>0</count>
        </types>
        <types>
          <type>Egyéb konferenciaközlemény</type>
          <typeEng>Conference paper</typeEng>
          <code>31</code>
          <count>0</count>
        </types>
        <types>
          <type>Egyéb konferenciakötet</type>
          <typeEng>Conference proceedings</typeEng>
          <code>32</code>
          <count>0</count>
        </types>
        <types>
          <type>Oltalmi formák</type>
          <typeEng>Protection forms</typeEng>
          <code>26</code>
          <count>0</count>
        </types>
        <types>
          <type>Disszertáció</type>
          <typeEng>Thesis</typeEng>
          <code>28</code>
          <count>0</count>
        </types>
        <types>
          <type>Egyéb</type>
          <typeEng>Miscellaneous</typeEng>
          <code>29</code>
          <count>0</count>
        </types>
        <types>
          <type>Alkotás</type>
          <typeEng>Achievement</typeEng>
          <code>22</code>
          <count>0</count>
        </types>
        <types>
          <type>Kutatási adat</type>
          <typeEng>Research data</typeEng>
          <code>33</code>
          <count>0</count>
        </types>
        <citationTypes>
          <type>Folyóiratcikk</type>
          <typeEng>Journal Article</typeEng>
          <code>24</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Könyvrészlet</type>
          <typeEng>Chapter in Book</typeEng>
          <code>25</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Könyv</type>
          <typeEng>Book</typeEng>
          <code>23</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Egyéb konferenciaközlemény</type>
          <typeEng>Conference paper</typeEng>
          <code>31</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Egyéb konferenciakötet</type>
          <typeEng>Conference proceedings</typeEng>
          <code>32</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Oltalmi formák</type>
          <typeEng>Protection forms</typeEng>
          <code>26</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Disszertáció</type>
          <typeEng>Thesis</typeEng>
          <code>28</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Egyéb</type>
          <typeEng>Miscellaneous</typeEng>
          <code>29</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Alkotás</type>
          <typeEng>Achievement</typeEng>
          <code>22</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Kutatási adat</type>
          <typeEng>Research data</typeEng>
          <code>33</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <years>
          <year>2025</year>
          <publicationCount>0</publicationCount>
          <citationCount>2</citationCount>
          <independentCitationCount>2</independentCitationCount>
          <citingPubCount>2</citingPubCount>
          <independentCitingPubCount>2</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
      </pubStats>
      <ratingsForSort>Q2</ratingsForSort>
      <hasCitationDuplums>false</hasCitationDuplums>
      <importDuplum>false</importDuplum>
      <importOverwritten>false</importOverwritten>
      <importSkipped>false</importSkipped>
      <userChangeableUntil>2024-03-29T12:58:02.811+0000</userChangeableUntil>
      <directInstitutesForSort>Szerves Kémia és Technológia Tanszék (BME / VBK)</directInstitutesForSort>
      <ownerAuthorCount>5</ownerAuthorCount>
      <ownerInstituteCount>8</ownerInstituteCount>
      <directInstituteCount>1</directInstituteCount>
      <authorCount>5</authorCount>
      <contributorCount>0</contributorCount>
      <hasQualityFactor>true</hasQualityFactor>
      <tempLockerIds>10063514</tempLockerIds>
      <languages>
        <language>
          <otype>Language</otype>
          <mtid>10002</mtid>
          <link>/api/language/10002</link>
          <label>English</label>
          <name>Angol</name>
          <nameEng>English</nameEng>
          <published>true</published>
          <oldId>2</oldId>
          <snippet>true</snippet>
        </language>
      </languages>
      <authorships>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>113463584</mtid>
          <link>/api/authorship/113463584</link>
          <label>Rávai, Bettina [Rávai, Bettina (szerves kémia), author] Department of Organic Chemistry and Technology (BUTE / FCTB)</label>
          <listPosition>1</listPosition>
          <share>0.2</share>
          <first>true</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10081859</mtid>
            <link>/api/author/10081859</link>
            <label>Bettina Rávai (szerves kémia)</label>
            <familyName>Rávai</familyName>
            <givenName>Bettina</givenName>
            <published>true</published>
            <snippet>true</snippet>
          </author>
          <familyName>Rávai</familyName>
          <givenName>Bettina</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>113463585</mtid>
          <link>/api/authorship/113463585</link>
          <label>Orosz, Máté János [Orosz, János Máté (gyógyszer-vegyész...), author] Department of Organic Chemistry and Technology (BUTE / FCTB)</label>
          <listPosition>2</listPosition>
          <share>0.2</share>
          <first>false</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10088953</mtid>
            <link>/api/author/10088953</link>
            <label>János Máté Orosz (gyógyszer-vegyészmérnöki)</label>
            <familyName>Orosz</familyName>
            <givenName>János Máté</givenName>
            <published>true</published>
            <snippet>true</snippet>
          </author>
          <familyName>Orosz</familyName>
          <givenName>Máté János</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>113463586</mtid>
          <link>/api/authorship/113463586</link>
          <label>Péterfi, Orsolya [Péterfi, Orsolya (gyógyszerészet), author] Department of Organic Chemistry and Technology (BUTE / FCTB)</label>
          <listPosition>3</listPosition>
          <share>0.2</share>
          <first>false</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10079154</mtid>
            <link>/api/author/10079154</link>
            <label>Orsolya Péterfi (gyógyszerészet)</label>
            <familyName>Péterfi</familyName>
            <givenName>Orsolya</givenName>
            <published>true</published>
            <snippet>true</snippet>
          </author>
          <familyName>Péterfi</familyName>
          <givenName>Orsolya</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>113463587</mtid>
          <link>/api/authorship/113463587</link>
          <label>Galata, Dorián László [Galata, Dorián László (szerves kémia), author] Department of Organic Chemistry and Technology (BUTE / FCTB)</label>
          <listPosition>4</listPosition>
          <share>0.2</share>
          <first>false</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10062618</mtid>
            <link>/api/author/10062618</link>
            <label>Dorián László Galata (szerves kémia)</label>
            <familyName>Galata</familyName>
            <givenName>Dorián László</givenName>
            <published>true</published>
            <oldId>10062618</oldId>
            <snippet>true</snippet>
          </author>
          <familyName>Galata</familyName>
          <givenName>Dorián László</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>113463588</mtid>
          <link>/api/authorship/113463588</link>
          <label>Bálint, Erika ✉ [Bálint, Erika (Szerves kémia), author] Department of Organic Chemistry and Technology (BUTE / FCTB)</label>
          <listPosition>5</listPosition>
          <share>0.2</share>
          <first>false</first>
          <last>true</last>
          <corresponding>true</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10030275</mtid>
            <link>/api/author/10030275</link>
            <label>Erika Bálint (Szerves kémia)</label>
            <familyName>Bálint</familyName>
            <givenName>Erika</givenName>
            <published>true</published>
            <oldId>10030275</oldId>
            <snippet>true</snippet>
          </author>
          <familyName>Bálint</familyName>
          <givenName>Erika</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
      </authorships>
      <identifiers>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>25145992</mtid>
          <link>/api/publicationidentifier/25145992</link>
          <label>DOI: 10.1007/s41981-023-00303-y</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>6</mtid>
            <link>/api/publicationsource/6</link>
            <label>DOI</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10001</mtid>
              <link>/api/publicationsourcetype/10001</link>
              <label>DOI</label>
              <mayHaveOa>true</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>DOI</name>
            <nameEng>DOI</nameEng>
            <linkPattern>https://doi.org/@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>6</oldId>
            <snippet>true</snippet>
          </source>
          <oaType>GOLD</oaType>
          <oaFree>true</oaFree>
          <validState>IDENTICAL</validState>
          <idValue>10.1007/s41981-023-00303-y</idValue>
          <realUrl>https://doi.org/10.1007/s41981-023-00303-y</realUrl>
          <published>false</published>
          <snippet>true</snippet>
        </identifier>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>25458545</mtid>
          <link>/api/publicationidentifier/25458545</link>
          <label>WoS: 001132139400001</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>1</mtid>
            <link>/api/publicationsource/1</link>
            <label>WoS</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10003</mtid>
              <link>/api/publicationsourcetype/10003</link>
              <label>Indexelő adatbázis</label>
              <mayHaveOa>false</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>WoS</name>
            <nameEng>WoS</nameEng>
            <linkPattern>https://www.webofscience.com/wos/woscc/full-record/@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>1</oldId>
            <snippet>true</snippet>
          </source>
          <validState>IDENTICAL</validState>
          <idValue>001132139400001</idValue>
          <realUrl>https://www.webofscience.com/wos/woscc/full-record/001132139400001</realUrl>
          <published>false</published>
          <snippet>true</snippet>
        </identifier>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>25279851</mtid>
          <link>/api/publicationidentifier/25279851</link>
          <label>Scopus: 85180679614</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>3</mtid>
            <link>/api/publicationsource/3</link>
            <label>Scopus</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10003</mtid>
              <link>/api/publicationsourcetype/10003</link>
              <label>Indexelő adatbázis</label>
              <mayHaveOa>false</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>Scopus</name>
            <nameEng>Scopus</nameEng>
            <linkPattern>http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>3</oldId>
            <snippet>true</snippet>
          </source>
          <validState>IDENTICAL</validState>
          <idValue>85180679614</idValue>
          <realUrl>http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-85180679614</realUrl>
          <published>false</published>
          <snippet>true</snippet>
        </identifier>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>25145993</mtid>
          <link>/api/publicationidentifier/25145993</link>
          <label>Other URL: https://link.springer.com/10.1007/s41981-023-00303-y</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>40</mtid>
            <link>/api/publicationsource/40</link>
            <label>Other URL</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10006</mtid>
              <link>/api/publicationsourcetype/10006</link>
              <label>Link</label>
              <mayHaveOa>true</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>Egyéb URL</name>
            <nameEng>Other URL</nameEng>
            <linkPattern>@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>40</oldId>
            <snippet>true</snippet>
          </source>
          <idValue>https://link.springer.com/10.1007/s41981-023-00303-y</idValue>
          <realUrl>https://link.springer.com/10.1007/s41981-023-00303-y</realUrl>
          <published>false</published>
          <snippet>true</snippet>
        </identifier>
      </identifiers>
      <subjects>
        <classification>
          <otype>Classification</otype>
          <mtid>10293</mtid>
          <link>/api/classification/10293</link>
          <label>Chemical sciences</label>
          <published>true</published>
          <snippet>true</snippet>
        </classification>
      </subjects>
      <keywords>
        <keyword>
          <otype>Keyword</otype>
          <mtid>1913</mtid>
          <link>/api/keyword/1913</link>
          <label>PARACETAMOL</label>
          <published>true</published>
          <oldId>1913</oldId>
          <snippet>true</snippet>
        </keyword>
        <keyword>
          <otype>Keyword</otype>
          <mtid>18272</mtid>
          <link>/api/keyword/18272</link>
          <label>infrared spectroscopy</label>
          <published>true</published>
          <oldId>18272</oldId>
          <snippet>true</snippet>
        </keyword>
        <keyword>
          <otype>Keyword</otype>
          <mtid>1003736</mtid>
          <link>/api/keyword/1003736</link>
          <label>Flow chemistry</label>
          <published>true</published>
          <oldId>1003736</oldId>
          <snippet>true</snippet>
        </keyword>
        <keyword>
          <otype>Keyword</otype>
          <mtid>1049263</mtid>
          <link>/api/keyword/1049263</link>
          <label>organic chemistry</label>
          <published>true</published>
          <oldId>1049263</oldId>
          <snippet>true</snippet>
        </keyword>
        <keyword>
          <otype>Keyword</otype>
          <mtid>1054227</mtid>
          <link>/api/keyword/1054227</link>
          <label>chemical engineering</label>
          <published>true</published>
          <oldId>1054227</oldId>
          <snippet>true</snippet>
        </keyword>
      </keywords>
      <ratings>
        <rating>
          <otype>SjrRating</otype>
          <mtid>11448035</mtid>
          <link>/api/sjrrating/11448035</link>
          <label>sjr:Q2 (2024) Scopus - Chemistry (miscellaneous) JOURNAL OF FLOW CHEMISTRY 2062-249X 2063-0212</label>
          <listPos>252</listPos>
          <rankValue>0.49</rankValue>
          <type>journal</type>
          <ratingType>
            <otype>RatingType</otype>
            <mtid>10002</mtid>
            <link>/api/ratingtype/10002</link>
            <label>sjr</label>
            <code>sjr</code>
            <published>true</published>
            <snippet>true</snippet>
          </ratingType>
          <subject>
            <otype>ClassificationExternal</otype>
            <mtid>1601</mtid>
            <link>/api/classificationexternal/1601</link>
            <label>Scopus - Chemistry (miscellaneous)</label>
            <published>true</published>
            <oldId>1601</oldId>
            <snippet>true</snippet>
          </subject>
          <ranking>Q2</ranking>
          <calculation>DIRECT</calculation>
          <published>true</published>
          <snippet>true</snippet>
        </rating>
      </ratings>
      <references>
        <reference>
          <otype>Reference</otype>
          <mtid>48284975</mtid>
          <link>/api/reference/48284975</link>
          <label>1. Mijalis AJ, Thomas DA, Simon MD, Adamo A, Beaumont R, Jensen KF, Pentelute BL (2017) A fully automated flow-based approach for accelerated peptide synthesis. Nat Chem Biol 13:464–466, DOI: 10.1038/nchembio.2318</label>
          <listPosition>1</listPosition>
          <doi>10.1038/nchembio.2318</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284976</mtid>
          <link>/api/reference/48284976</link>
          <label>2. Rubens M, Vrijsen JH, Laun J, Junkers T (2019) Precise polymer synthesis by autonomous self-optimizing flow reactors. Angew Chem 131:3215–3219, DOI: 10.1002/ange.201810384</label>
          <listPosition>2</listPosition>
          <doi>10.1002/ange.201810384</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284977</mtid>
          <link>/api/reference/48284977</link>
          <label>3. Cortés-Borda D, Wimmer E, Gouilleux B, Barré E, Oger N, Goulamaly L, Peault L, Charrier B, Truchet C, Giraudeau P, Rodriguez-Zubiri M, Le Grognec E, Felpin FX (2018) An autonomous self-optimizing flow reactor for the synthesis of natural product carpanone. J Org Chem 83:14286–14289, DOI: 10.1021/acs.joc.8b01821</label>
          <listPosition>3</listPosition>
          <doi>10.1021/acs.joc.8b01821</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284978</mtid>
          <link>/api/reference/48284978</link>
          <label>4. Noël T (2017) A personal perspective on the future of flow photochemistry. J Flow Chem 7:87–93, DOI: 10.1556/1846.2017.00022</label>
          <listPosition>4</listPosition>
          <doi>10.1556/1846.2017.00022</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284979</mtid>
          <link>/api/reference/48284979</link>
          <label>5. Fitzpatrick DE, Battilocchio C, Ley SV (2016) A novel internet-based reaction monitoring, control and autonomous self-optimization platform for chemical synthesis. Org Process Res Dev 20:386–394, DOI: 10.1021/acs.oprd.5b00313</label>
          <listPosition>5</listPosition>
          <doi>10.1021/acs.oprd.5b00313</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284980</mtid>
          <link>/api/reference/48284980</link>
          <label>6. Hsieh HW, Coley CW, Baumgartner LM, Jensen KF, Robinson RI (2018) Photoredox iridium-nickel dual-catalyzed decarboxylative arylation cross-coupling: from batch to continuous flow via self-optimizing segmented flow reactor. Org Process Res Dev 22:542–550, DOI: 10.1021/acs.oprd.8b00018</label>
          <listPosition>6</listPosition>
          <doi>10.1021/acs.oprd.8b00018</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284981</mtid>
          <link>/api/reference/48284981</link>
          <label>7. Bédard A, Adamo A, Aroh KC, Grace Russell M, Bedermann AA, Torosian J, Yue B, Jensen KF, Jamison TF (2018) Reconfigurable system for automated optimization of diverse chemical reactions. Science 361:1220–1225, DOI: 10.1126/science.aat0650</label>
          <listPosition>7</listPosition>
          <doi>10.1126/science.aat0650</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284982</mtid>
          <link>/api/reference/48284982</link>
          <label>8. Blanco-Ania D, Rutjes FPJT (2017) Continuous-Flow Chemistry in Chemical Education. J Flow Chem 7:157–158, DOI: 10.1556/1846.2017.00023</label>
          <listPosition>8</listPosition>
          <doi>10.1556/1846.2017.00023</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284983</mtid>
          <link>/api/reference/48284983</link>
          <label>9. Wan T, Wen Z, Laudadio G, Capaldo L, Lammers R, Rincón JA, García-Losada P, Mateos C, Frederick MO, Broersma R, Noël T (2022) Accelerated and scalable C(sp3)–H amination via decatungstate photocatalysis using a flow photoreactor equipped with high-intensity LEDs. ACS Cent Sci 8:51–56, DOI: 10.1021/acscentsci.1c01109</label>
          <listPosition>9</listPosition>
          <doi>10.1021/acscentsci.1c01109</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284984</mtid>
          <link>/api/reference/48284984</link>
          <label>10. Laudadio G, Barmpoutsis E, Schotten C, Struik L, Govaerts S, Browne DL, Noël T (2019) Sulfonamide synthesis through electrochemical oxidative coupling of amines and thiols. J Am Chem Soc 141:5664–5668, DOI: 10.1021/jacs.9b02266</label>
          <listPosition>10</listPosition>
          <doi>10.1021/jacs.9b02266</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284985</mtid>
          <link>/api/reference/48284985</link>
          <label>11. Gutmann B, Obermayer D, Roduit JP, Roberge DM, Kappe CO (2012) Safe generation and synthetic utilization of hydrazoic acid in a continuous flow reactor. J Flow Chem 2:8–19, DOI: 10.1556/jfchem.2012.00021</label>
          <listPosition>11</listPosition>
          <doi>10.1556/jfchem.2012.00021</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284986</mtid>
          <link>/api/reference/48284986</link>
          <label>12. Lebl R, Cantillo D, Kappe CO (2019) Continuous generation, in-line quantification and utilization of nitrosyl chloride in photonitrosation reactions. React Chem Eng 4:738–746, DOI: 10.1039/C8RE00323H</label>
          <listPosition>12</listPosition>
          <doi>10.1039/C8RE00323H</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284987</mtid>
          <link>/api/reference/48284987</link>
          <label>13. Kim H, Nagaki A, Yoshida J (2011) A flow-microreactor approach to protecting-group-free synthesis using organolithium compounds. Nat Commun 2:1–6, DOI: 10.1038/ncomms1264</label>
          <listPosition>13</listPosition>
          <doi>10.1038/ncomms1264</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284988</mtid>
          <link>/api/reference/48284988</link>
          <label>14. Fuse S, Mifune Y, Takahashi T (2014) Efficient amide bond formation through a rapid and strong activation of carboxylic acids in a microflow reactor. Angew Chem Int Ed 53:851–855, DOI: 10.1002/anie.201307987</label>
          <listPosition>14</listPosition>
          <doi>10.1002/anie.201307987</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284989</mtid>
          <link>/api/reference/48284989</link>
          <label>15. Vanoye L, Aloui A, Pablos M, Philippe R, Percheron A, Favre-Réguillon A, De Bellefon C (2013) A safe and efficient flow oxidation of aldehydes with O2. Org Lett 15:5978–5981, DOI: 10.1021/ol401273k</label>
          <listPosition>15</listPosition>
          <doi>10.1021/ol401273k</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284990</mtid>
          <link>/api/reference/48284990</link>
          <label>16. Müller STR, Smith D, Hellier P, Wirth T (2014) Safe generation and direct use of diazoesters in flow chemistry. Synlett 25:871–875, DOI: 10.1055/s-0033-1340835</label>
          <listPosition>16</listPosition>
          <doi>10.1055/s-0033-1340835</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284991</mtid>
          <link>/api/reference/48284991</link>
          <label>17. Pieber B, Kappe CO (2016) Generation and synthetic application of trifluoromethyl diazomethane utilizing continuous flow technologies. Org Lett 18:1076–1079, DOI: 10.1021/acs.orglett.6b00194</label>
          <listPosition>17</listPosition>
          <doi>10.1021/acs.orglett.6b00194</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284992</mtid>
          <link>/api/reference/48284992</link>
          <label>18. Gutmann B, Kappe CO (2017) Forbidden chemistries — paths to a sustainable future engaging continuous processing. J Flow Chem 7:65–71, DOI: 10.1556/1846.2017.00009</label>
          <listPosition>18</listPosition>
          <doi>10.1556/1846.2017.00009</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284993</mtid>
          <link>/api/reference/48284993</link>
          <label>19. Vieira T, Stevens AC, Chtchemelinine A, Gao D, Badalov P, Heumann L (2020) Development of a large-scale cyanation processing continuous flow chemistry en route to the synthesis of remdesivir. Org Process Res Dev 24:2113–2121, DOI: 10.1021/acs.oprd.0c00172</label>
          <listPosition>19</listPosition>
          <doi>10.1021/acs.oprd.0c00172</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284994</mtid>
          <link>/api/reference/48284994</link>
          <label>20. Kockinger M, Hone CA, Kappe CO (2019) HCN on tap: on-demand continuous production of anhydrous HCN for organic synthesis. Org Lett 21:5326–5330, DOI: 10.1021/acs.orglett.9b01941</label>
          <listPosition>20</listPosition>
          <doi>10.1021/acs.orglett.9b01941</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284995</mtid>
          <link>/api/reference/48284995</link>
          <label>21. Noël T, Cao Y, Laudadio G (2019) The fundamentals behind the use of flow reactors in electrochemistry. Acc Chem Res 52:2858–2869, DOI: 10.1021/acs.accounts.9b00412</label>
          <listPosition>21</listPosition>
          <doi>10.1021/acs.accounts.9b00412</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284996</mtid>
          <link>/api/reference/48284996</link>
          <label>22. Liu Y, Chen G, Yue J (2020) Manipulation of gas-liquid-liquid systems in continuous flow microreactors for efficient reaction processes. J Flow Chem 103:103–121, DOI: 10.1007/s41981-019-00062-9</label>
          <listPosition>22</listPosition>
          <doi>10.1007/s41981-019-00062-9</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284997</mtid>
          <link>/api/reference/48284997</link>
          <label>23. Wan T, Capaldo L, Laudadio G, Nyuchev AV, Rincón JA, García-Losada P, Mateos C, Frederick MO, Nuno M, Noël T (2021) Decatungstate-mediated C(sp3)–H heteroarylation via radical-polar crossover in batch and flow. Angew Chem Int Ed 60:17893–17897, DOI: 10.1002/anie.202104682</label>
          <listPosition>23</listPosition>
          <doi>10.1002/anie.202104682</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284998</mtid>
          <link>/api/reference/48284998</link>
          <label>24. Capaldo L, Wen Z, Noël T (2023) A field guide to flow chemistry for synthetic organic chemists. Chem Sci 14:4230–4327, DOI: 10.1039/D3SC00992K</label>
          <listPosition>24</listPosition>
          <doi>10.1039/D3SC00992K</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48284999</mtid>
          <link>/api/reference/48284999</link>
          <label>25. Zhang P, Russell MG, Jamison TF (2014) Continuous flow total synthesis of rufinamide. Org Process Res Dev 18:1567–1570, DOI: 10.1021/op500166n</label>
          <listPosition>25</listPosition>
          <doi>10.1021/op500166n</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285000</mtid>
          <link>/api/reference/48285000</link>
          <label>26. Kupracz L, Kirschning A (2013) Multiple organolithium generation in the continuous flow synthesis of Amitriptyline. Adv Synth Catal 355:3375–3380, DOI: 10.1002/adsc.201300614</label>
          <listPosition>26</listPosition>
          <doi>10.1002/adsc.201300614</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285001</mtid>
          <link>/api/reference/48285001</link>
          <label>27. Snead DR, Jamison TF (2013) End-to-end continuous flow synthesis and purification of diphenhydramine hydrochloride featuring atom economy, in-line separation, and flow of molten ammonium salts. Chem Sci 4:2822–2827, DOI: 10.1039/c3sc50859e</label>
          <listPosition>27</listPosition>
          <doi>10.1039/c3sc50859e</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285002</mtid>
          <link>/api/reference/48285002</link>
          <label>28. Hopkin MD, Baxendale IR, Ley SV (2010) A flow-based synthesis of imatinib: the API of Gleevec. ChemComm 46:2450–2452</label>
          <listPosition>28</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285003</mtid>
          <link>/api/reference/48285003</link>
          <label>29. Liu C, Xie J, Wu W, Wang M, Chen W, Idres SB, Rong J, Deng LW, Khan SA, Wu J (2021) Automated synthesis of prexasertib and derivatives enabled by continuous-flow solid-phase synthesis. Nat Chem 13:451–457, DOI: 10.1038/s41557-021-00662-w</label>
          <listPosition>29</listPosition>
          <doi>10.1038/s41557-021-00662-w</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285004</mtid>
          <link>/api/reference/48285004</link>
          <label>30. Gilmore K, Kopetzki D, Lee JW, Horváth Z, McQuade DT, Seidel-Morgenstern A, Seeberger PH (2014) Continuous synthesis of artemisinin-derived medicines. ChemComm 50:12652–12655</label>
          <listPosition>30</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285005</mtid>
          <link>/api/reference/48285005</link>
          <label>31. Mougeot R, Jubault P, Legros J, Poisson T (2021) Continuous flow synthesis of propofol. Molecules 26:7183, DOI: 10.3390/molecules26237183</label>
          <listPosition>31</listPosition>
          <doi>10.3390/molecules26237183</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285006</mtid>
          <link>/api/reference/48285006</link>
          <label>32. Martins GM, Magalhaes MFA, Brocksom TJ, Bagnato VS, Oliveira KT (2022) Scaled up and telescoped synthesis of propofol under continuous-flow conditions. J Flow Chem 12:371–379, DOI: 10.1007/s41981-022-00234-0</label>
          <listPosition>32</listPosition>
          <doi>10.1007/s41981-022-00234-0</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285007</mtid>
          <link>/api/reference/48285007</link>
          <label>33. Hartwig J, Ceylan S, Kupracz L, Coutable L, Kirschning A (2013) Heating under high-frequency inductive conditions: application to the continuous synthesis of the neurolepticum olanzapine (Zyprexa). Angew Chem Int Ed 52:9813–9817, DOI: 10.1002/anie.201302239</label>
          <listPosition>33</listPosition>
          <doi>10.1002/anie.201302239</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285008</mtid>
          <link>/api/reference/48285008</link>
          <label>34. Guidi M, Moon S, Anghileri L, Cambié D, Seeberger PH, Gilmore K (2021) Combining radial and continuous flow synthesis to optimize and scale-up the production of medicines. React Chem Eng 6:220–224, DOI: 10.1039/D0RE00445F</label>
          <listPosition>34</listPosition>
          <doi>10.1039/D0RE00445F</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285009</mtid>
          <link>/api/reference/48285009</link>
          <label>35. Berton M, de Souza JM, Abdiaj I, McQuade DT, Snead DR (2020) Scaling continuous API synthesis from milligram to kilogram: extending the enabling benefits of micro to the plant. J Flow Chem 10:73–92, DOI: 10.1007/s41981-019-00060-x</label>
          <listPosition>35</listPosition>
          <doi>10.1007/s41981-019-00060-x</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285010</mtid>
          <link>/api/reference/48285010</link>
          <label>36. Yaseneva P, Plaza D, Fan X, Loponov K, Lapkin A (2015) Synthesis of the antimalarial API artemether in a flow reactor. Catal Today 239:90–96, DOI: 10.1016/j.cattod.2014.04.014</label>
          <listPosition>36</listPosition>
          <doi>10.1016/j.cattod.2014.04.014</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285011</mtid>
          <link>/api/reference/48285011</link>
          <label>37. Sthalam VK, Singh AK, Pabbaraja S (2019) An integrated continuous flow micro-total ultrafast process system (µ-TUFPS) for the synthesis of celecoxib and other cyclooxygenase inhibitors. Org Process Res Dev 23:1892–1899, DOI: 10.1021/acs.oprd.9b00212</label>
          <listPosition>37</listPosition>
          <doi>10.1021/acs.oprd.9b00212</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285012</mtid>
          <link>/api/reference/48285012</link>
          <label>38. Grimaldi F, Ramirez H, Lutz C, Lettieri P (2021) Intensified production of zeolite A: life cycle assessment of a continuous flow pilot plant and comparison with a conventional batch plant. J Ind Ecol 25:1617–1630, DOI: 10.1111/jiec.13180</label>
          <listPosition>38</listPosition>
          <doi>10.1111/jiec.13180</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285013</mtid>
          <link>/api/reference/48285013</link>
          <label>39. Thaisrivongs DA, Naber JR, Rogus NJ, Spencer G (2018) Development of an organometallic flow chemistry reaction at pilot-plant scale for the manufacture of verubecestat. Org Process Res Dev 22:403–408, DOI: 10.1021/acs.oprd.7b00385</label>
          <listPosition>39</listPosition>
          <doi>10.1021/acs.oprd.7b00385</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285014</mtid>
          <link>/api/reference/48285014</link>
          <label>40. Kuijpers KPL, Weggemans WMA, Verwiljen CJA, Noël T (2020) Flow chemistry experiments in the undergraduate teaching laboratory: synthesis of diazo dyes and disulfides. J Flow Chem 11:7–12, DOI: 10.1007/s41981-020-00118-1</label>
          <listPosition>40</listPosition>
          <doi>10.1007/s41981-020-00118-1</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285015</mtid>
          <link>/api/reference/48285015</link>
          <label>41. Garzón-Posse F, Quevedo-Acosta Y, Gamba-Sánchez D (2022) Paracetamol synthesis for active learning of amide functional groups in undergraduate chemistry laboratories. J Chem Educ 99:2385–2391, DOI: 10.1021/acs.jchemed.2c00080</label>
          <listPosition>41</listPosition>
          <doi>10.1021/acs.jchemed.2c00080</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285016</mtid>
          <link>/api/reference/48285016</link>
          <label>42. Prasad HS, Srinivasa GR, Channe Gowda D (2005) Convenient, cost-effective and mild method for the N-Acetylation of anilines and secondary amines. Synth Comm 35:1189–1195, DOI: 10.1081/SCC-200054764</label>
          <listPosition>42</listPosition>
          <doi>10.1081/SCC-200054764</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285017</mtid>
          <link>/api/reference/48285017</link>
          <label>43. Chanda A, Daly AM, Foley DA, LaPack MA, Mukherjee S, Orr JD, Reid GL, Thompson DR, Ward HW (2015) Industry perspectives on process Analytical Technology: tools and applications in API development. Org Process Res Dev 19:63–83, DOI: 10.1021/op400358b</label>
          <listPosition>43</listPosition>
          <doi>10.1021/op400358b</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285018</mtid>
          <link>/api/reference/48285018</link>
          <label>44. Browne DL, Wright S, Deadman BJ, Dunnage S, Baxendale IR, Turner RM, Ley SV (2012) Continuous flow reaction monitoring using an on-line miniature mass spectrometer. Rapid Commun Mass Spectrom 26:1999–2010, DOI: 10.1002/rcm.6312</label>
          <listPosition>44</listPosition>
          <doi>10.1002/rcm.6312</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285019</mtid>
          <link>/api/reference/48285019</link>
          <label>45. Coates LJ, Gooley A, Lam SC, Firme B, Haddad PR, Wirth HJ, Diaz A, Riley F, Paull B (2023) Compact capillary high performance liquid chromatography system for pharmaceutical on-line reaction monitoring. Anal Chim Acta 1247:340903, DOI: 10.1016/j.aca.2023.340903</label>
          <listPosition>45</listPosition>
          <doi>10.1016/j.aca.2023.340903</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285020</mtid>
          <link>/api/reference/48285020</link>
          <label>46. Fontalvo-Gómez M, Colucci JA, Velez N, Romanach RJ (2013) In-line near-infrared (NIR) and raman spectroscopy coupled with principal component analysis (PCA) for in situ evaluation of the transesterification reaction. Appl Spectrosc 67:1142–1149, DOI: 10.1366/12-06729</label>
          <listPosition>46</listPosition>
          <doi>10.1366/12-06729</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285021</mtid>
          <link>/api/reference/48285021</link>
          <label>47. Mitic A, Cervera-Padrell AE, Mortensen AR, Skovby T, Dam-Johansen K, Javakhishvili I, Hvilsted S, Gernaey KV (2016) Implementation of Near-Infrared Spectroscopy for In-Line monitoring of a dehydration reaction in a Tubular Laminar Reactor. Org Process Res Dev 20:395–402, DOI: 10.1021/op5004055</label>
          <listPosition>47</listPosition>
          <doi>10.1021/op5004055</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285022</mtid>
          <link>/api/reference/48285022</link>
          <label>48. Novak P, Kišić A, Hrenar T, Jednačak T, Miljanić S, Verbanec G (2011) In-line reaction monitoring of entacapone synthesis by Raman spectroscopy and multivariate analysis. J Pharm Biomed Anal 54:660–666, DOI: 10.1016/j.jpba.2010.10.012</label>
          <listPosition>48</listPosition>
          <doi>10.1016/j.jpba.2010.10.012</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285023</mtid>
          <link>/api/reference/48285023</link>
          <label>49. Šahnić D, Meštrović E, Jednačak T, Habinovec I, Vuković JP, Novak P (2016) Monitoring and quantification of Omeprazole Synthesis reaction by In-Line Raman Spectroscopy and characterization of the reaction components. Org Process Res Dev 20:2092–2099, DOI: 10.1021/acs.oprd.6b00323</label>
          <listPosition>49</listPosition>
          <doi>10.1021/acs.oprd.6b00323</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285024</mtid>
          <link>/api/reference/48285024</link>
          <label>50. Sletten ET, Nuño M, Guthrie D, Seeberger PH (2019) Real-time monitoring of solid-phase peptide synthesis using a variable bed flow reactor. Chem Comm 55:14598–14601, DOI: 10.1039/C9CC08421E</label>
          <listPosition>50</listPosition>
          <doi>10.1039/C9CC08421E</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285025</mtid>
          <link>/api/reference/48285025</link>
          <label>51. Steinbach JC, Schneider M, Hauler O, Lorenz G, Rebner K, Kandelbauer A (2020) A process analytical concept for in-line ftir monitoring of polysiloxane formation. Polym (Basel) 12:1–13</label>
          <listPosition>51</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285026</mtid>
          <link>/api/reference/48285026</link>
          <label>52. Sans V, Porwol L, Dragone V, Cronin L (2015) A self optimizing synthetic organic reactor system using real-time in-line NMR spectroscopy. Chem Sci 6:1258–1264, DOI: 10.1039/C4SC03075C</label>
          <listPosition>52</listPosition>
          <doi>10.1039/C4SC03075C</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285027</mtid>
          <link>/api/reference/48285027</link>
          <label>53. Gomez MV, De La Hoz A (2017) NMR reaction monitoring in flow synthesis. Beilstein J Org Chem 13:285–300, DOI: 10.3762/bjoc.13.31</label>
          <listPosition>53</listPosition>
          <doi>10.3762/bjoc.13.31</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>48285028</mtid>
          <link>/api/reference/48285028</link>
          <label>54. Bana P, Örkényi R, Lövei K, Lakó Á, Túrós GI, Éles J, Faigl F, Greiner I (2017) The route from problem to solution in multistep continuous flow synthesis of pharmaceutical compounds. Bioorg Med Chem 25:6180–6189, DOI: 10.1016/j.bmc.2016.12.046</label>
          <listPosition>54</listPosition>
          <doi>10.1016/j.bmc.2016.12.046</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
      </references>
      <link>/api/publication/34453979</link>
      <label>Rávai Bettina et al. Flow chemical laboratory practice for undergraduate students: synthesis of paracetamol. (2024) JOURNAL OF FLOW CHEMISTRY 2062-249X 2063-0212 14 2 409-415</label><template>&lt;div class=&quot;JournalArticle Publication short-list&quot;&gt; &lt;div class=&quot;authors&quot;&gt; &lt;span class=&quot;author-name&quot; mtid=&quot;10081859&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10081859&quot; target=&quot;_blank&quot;&gt;Rávai, Bettina&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10088953&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10088953&quot; target=&quot;_blank&quot;&gt;Orosz, Máté János&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10079154&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10079154&quot; target=&quot;_blank&quot;&gt;Péterfi, Orsolya&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10062618&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10062618&quot; target=&quot;_blank&quot;&gt;Galata, Dorián László&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10030275&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10030275&quot; target=&quot;_blank&quot;&gt;Bálint, Erika ✉&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; &lt;/div &gt;&lt;div class=&quot;title&quot;&gt;&lt;a href=&quot;/gui2/?mode=browse&amp;params=publication;34453979&quot; mtid=&quot;34453979&quot; target=&quot;_blank&quot;&gt;Flow chemical laboratory practice for undergraduate students: synthesis of paracetamol&lt;/a&gt;&lt;/div&gt; &lt;div class=&quot;pub-info&quot;&gt; &lt;span class=&quot;journal-title&quot;&gt;JOURNAL OF FLOW CHEMISTRY&lt;/span&gt; &lt;span class=&quot;journal-volume&quot;&gt;14&lt;/span&gt; : &lt;span class=&quot;journal-issue&quot;&gt;2&lt;/span&gt; &lt;span class=&quot;page&quot;&gt; pp. 409-415. , 7 p. &lt;/span&gt; &lt;span class=&quot;year&quot;&gt;(2024)&lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;pub-end&quot;&gt;&lt;div class=&quot;identifier-list&quot;&gt; &lt;span class=&quot;identifiers&quot;&gt; &lt;span class=&quot;id identifier oa_GOLD&quot; title=&quot; Gold &quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;10.1007/s41981-023-00303-y&quot; target=&quot;_blank&quot; href=&quot;https://doi.org/10.1007/s41981-023-00303-y&quot;&gt; DOI &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;001132139400001&quot; target=&quot;_blank&quot; href=&quot;https://www.webofscience.com/wos/woscc/full-record/001132139400001&quot;&gt; WoS &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;85180679614&quot; target=&quot;_blank&quot; href=&quot;http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-85180679614&quot;&gt; Scopus &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:black&quot; title=&quot;https://link.springer.com/10.1007/s41981-023-00303-y&quot; target=&quot;_blank&quot; href=&quot;https://link.springer.com/10.1007/s41981-023-00303-y&quot;&gt; Other URL &lt;/a&gt; &lt;/span&gt; &lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;short-pub-prop-list&quot;&gt; &lt;span class=&quot;deleted-record&quot;&gt;Centrally managed&lt;/span&gt; &lt;span class=&quot;short-pub-mtid&quot;&gt; Publication:34453979 &lt;/span&gt; &lt;span class=&quot;status-holder&quot;&gt;&lt;span class=&quot;status-data status-ADMIN_APPROVED&quot;&gt; Admin approved &lt;/span&gt;&lt;/span&gt; &lt;span class=&quot;pub-core&quot;&gt;Core Citing &lt;/span&gt; &lt;span class=&quot;pub-type&quot;&gt;Journal Article (Article ) &lt;/span&gt; &lt;!-- &amp;&amp; !record.category.scientific --&gt; &lt;span class=&quot;pub-category&quot;&gt;Scientific&lt;/span&gt; &lt;div class=&quot;publication-citation&quot; style=&quot;margin-left: 0.5cm;&quot;&gt; &lt;span title=&quot;&quot; class=&quot;citingPub-count&quot;&gt;Citing papers: 2&lt;/span&gt; | Independent citation: 2 | Self citation: 0 | Unknown citation: 0 | Number of citations in WoS: 2 | Number of citations in Scopus:&amp;nbsp;2 | WoS/Scopus assigned:&amp;nbsp;2 | Number of citations with DOI:&amp;nbsp;2 &lt;/div&gt; &lt;/div&gt; &lt;/div&gt; &lt;/div&gt;</template><template2>&lt;div class=&quot;JournalArticle Publication long-list&quot;&gt; &lt;div class=&quot;authors&quot;&gt; &lt;img title=&quot;Forrásközlemény&quot; style=&quot;float: left&quot; src=&quot;/frontend/resources/grid/publication-core-icon.png&quot;&gt; &lt;img title=&quot;Idézőközlemény&quot; style=&quot;float: left&quot; src=&quot;/frontend/resources/grid/publication-citation-icon.png&quot;&gt; &lt;div class=&quot;autype autype0&quot;&gt; &lt;span class=&quot;author-name&quot; mtid=&quot;10081859&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10081859&quot; target=&quot;_blank&quot;&gt;Rávai Bettina (&lt;span class=&quot;authorship-author-name&quot;&gt;Rávai Bettina&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; szerves kémia&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Budapest University of Technology and Economics&quot;&gt;BUTE&lt;/span&gt;/&lt;span title=&quot;Faculty of Chemical Technology and Biotechnology&quot;&gt;FCTB&lt;/span&gt;/Department of Organic Chemistry and Technology&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10088953&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10088953&quot; target=&quot;_blank&quot;&gt;Orosz Máté János (&lt;span class=&quot;authorship-author-name&quot;&gt;Orosz János Máté&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; gyógyszer-vegyészmérnöki&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Budapest University of Technology and Economics&quot;&gt;BUTE&lt;/span&gt;/&lt;span title=&quot;Faculty of Chemical Technology and Biotechnology&quot;&gt;FCTB&lt;/span&gt;/Department of Organic Chemistry and Technology&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10079154&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10079154&quot; target=&quot;_blank&quot;&gt;Péterfi Orsolya (&lt;span class=&quot;authorship-author-name&quot;&gt;Péterfi Orsolya&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; gyógyszerészet&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Budapest University of Technology and Economics&quot;&gt;BUTE&lt;/span&gt;/&lt;span title=&quot;Faculty of Chemical Technology and Biotechnology&quot;&gt;FCTB&lt;/span&gt;/Department of Organic Chemistry and Technology&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10062618&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10062618&quot; target=&quot;_blank&quot;&gt;Galata Dorián László (&lt;span class=&quot;authorship-author-name&quot;&gt;Galata Dorián László&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; szerves kémia&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Budapest University of Technology and Economics&quot;&gt;BUTE&lt;/span&gt;/&lt;span title=&quot;Faculty of Chemical Technology and Biotechnology&quot;&gt;FCTB&lt;/span&gt;/Department of Organic Chemistry and Technology&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10030275&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10030275&quot; target=&quot;_blank&quot;&gt;Bálint Erika ✉ (&lt;span class=&quot;authorship-author-name&quot;&gt;Bálint Erika&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; Szerves kémia&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Budapest University of Technology and Economics&quot;&gt;BUTE&lt;/span&gt;/&lt;span title=&quot;Faculty of Chemical Technology and Biotechnology&quot;&gt;FCTB&lt;/span&gt;/Department of Organic Chemistry and Technology&lt;/span&gt; &lt;/div&gt; &lt;/div&gt; &lt;div class=&quot;title&quot;&gt;&lt;a href=&quot;/gui2/?mode=browse&amp;params=publication;34453979&quot; target=&quot;_blank&quot;&gt;Flow chemical laboratory practice for undergraduate students: synthesis of paracetamol&lt;/a&gt;&lt;/div&gt; &lt;div&gt; &lt;span class=&quot;journal-title&quot;&gt;JOURNAL OF FLOW CHEMISTRY&lt;/span&gt; &lt;span class=&quot;journal-issn&quot;&gt;(&lt;a target=&quot;_blank&quot; href=&quot;https://portal.issn.org/resource/ISSN/2062-249X&quot;&gt;2062-249X&lt;/a&gt; &lt;a target=&quot;_blank&quot; href=&quot;https://portal.issn.org/resource/ISSN/2063-0212&quot;&gt;2063-0212&lt;/a&gt;)&lt;/span&gt;: &lt;span class=&quot;journal-volume&quot;&gt;14&lt;/span&gt; &lt;span class=&quot;journal-issue&quot;&gt;2&lt;/span&gt; &lt;span class=&quot;page&quot;&gt; pp 409-415 &lt;/span&gt; &lt;span class=&quot;year&quot;&gt;(2024)&lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;pub-footer&quot;&gt;  &lt;span class=&quot;language&quot; xmlns=&quot;http://www.w3.org/1999/html&quot;&gt;Language: English | &lt;/span&gt; &lt;span class=&quot;identifiers&quot;&gt; &lt;span class=&quot;id identifier oa_GOLD&quot; title=&quot; Gold &quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;10.1007/s41981-023-00303-y&quot; target=&quot;_blank&quot; href=&quot;https://doi.org/10.1007/s41981-023-00303-y&quot;&gt; DOI &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;001132139400001&quot; target=&quot;_blank&quot; href=&quot;https://www.webofscience.com/wos/woscc/full-record/001132139400001&quot;&gt; WoS &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;85180679614&quot; target=&quot;_blank&quot; href=&quot;http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-85180679614&quot;&gt; Scopus &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:black&quot; title=&quot;https://link.springer.com/10.1007/s41981-023-00303-y&quot; target=&quot;_blank&quot; href=&quot;https://link.springer.com/10.1007/s41981-023-00303-y&quot;&gt; Other URL &lt;/a&gt; &lt;/span&gt; &lt;/span&gt; &lt;OnlyViewableByAuthor&gt;&lt;div class=&quot;ratings&quot;&gt; &lt;div class=&quot;journal-subject&quot;&gt;Journal subject: Scopus - Chemistry (miscellaneous)&amp;nbsp;&amp;nbsp;&amp;nbsp;Rank:&amp;nbsp;Q2&lt;/div&gt; &lt;div class=&quot;journal-subject&quot;&gt;Journal subject: Scopus - Fluid Flow and Transfer Processes&amp;nbsp;&amp;nbsp;&amp;nbsp;Rank:&amp;nbsp;Q2&lt;/div&gt; &lt;div class=&quot;journal-subject&quot;&gt;Journal subject: Scopus - Organic Chemistry&amp;nbsp;&amp;nbsp;&amp;nbsp;Rank:&amp;nbsp;Q3&lt;/div&gt; &lt;/div&gt;&lt;/OnlyViewableByAuthor&gt; &lt;div class=&quot;publication-citation&quot; style=&quot;margin-left: 0.5cm;&quot;&gt; &lt;span title=&quot;&quot; class=&quot;citingPub-count&quot;&gt;Citing papers: 2&lt;/span&gt; | Independent citation: 2 | Self citation: 0 | Unknown citation: 0 | Number of citations in WoS: 2 | Number of citations in Scopus:&amp;nbsp;2 | WoS/Scopus assigned:&amp;nbsp;2 | Number of citations with DOI:&amp;nbsp;2 &lt;/div&gt;   &lt;div class=&quot;publication-citation&quot;&gt; &lt;a target=&quot;_blank&quot; href=&quot;/api/publication?cond=citations.related;eq;34453979&amp;sort=publishedYear,desc&amp;sort=title&quot;&gt; Number of cited publications: 1 &lt;/a&gt; &lt;/div&gt; &lt;div class=&quot;mtid&quot;&gt;&lt;span class=&quot;long-pub-mtid&quot;&gt;Publication: 34453979&lt;/span&gt; | &lt;span class=&quot;status-data status-ADMIN_APPROVED&quot;&gt; Admin approved &lt;/span&gt; Core Citing | &lt;span class=&quot;type-subtype&quot;&gt;Journal Article ( Article ) &lt;/span&gt; | &lt;span class=&quot;pub-category&quot;&gt;Scientific&lt;/span&gt; | &lt;span class=&quot;publication-sourceOfData&quot;&gt;kézi felvitel&lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;funder&quot;&gt; Nemzeti Gyógyszerkutatási és Fejlesztési Laboratórium (PharmaLab)(RRF-2.3.1-21-2022-00015) Funder: NRDIO, Biológiailag aktív izatin- és xantén-származékok multikomponensű szintézise, a vegyületek ciklode...(FK142712) Funder: NR-DIO &lt;/div&gt; &lt;div class=&quot;lastModified&quot;&gt;Last Modified: 2026.04.10. 12:54 András Balázs (MTMT Központ, admin) &lt;/div&gt; &lt;div class=&quot;lockedBy&quot;&gt;Centrally managed 2024.01.26. 09:08 Katalin Mikola (MTMT 3, admin) &lt;/div&gt; &lt;/div&gt;&lt;/div&gt;</template2>
    </publication>
  </content>
</myciteResult>
