Flow chemical laboratory practice for undergraduate students: synthesis of paracetamol

Rávai, Bettina [Rávai, Bettina (szerves kémia), author] Department of Organic Chemistry and Technology (BUTE / FCTB); Orosz, Máté János [Orosz, János Máté (gyógyszer-vegyész...), author] Department of Organic Chemistry and Technology (BUTE / FCTB); Péterfi, Orsolya [Péterfi, Orsolya (gyógyszerészet), author] Department of Organic Chemistry and Technology (BUTE / FCTB); Galata, Dorián László [Galata, Dorián László (szerves kémia), author] Department of Organic Chemistry and Technology (BUTE / FCTB); Bálint, Erika ✉ [Bálint, Erika (Szerves kémia), author] Department of Organic Chemistry and Technology (BUTE / FCTB)

English Article (Journal Article) Scientific
Published: JOURNAL OF FLOW CHEMISTRY 2062-249X 2063-0212 14 (2) pp. 409-415 2024
  • SJR Scopus - Chemistry (miscellaneous): Q2
Fundings:
  • 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
Subjects:
  • Chemical sciences
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.
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2026-04-17 14:08