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通过无溶剂多相有机催化实现(-)-帕罗西汀手性关键中间体的克级规模流动合成。

Multigram-scale flow synthesis of the chiral key intermediate of (-)-paroxetine enabled by solvent-free heterogeneous organocatalysis.

作者信息

Ötvös Sándor B, Pericàs Miquel A, Kappe C Oliver

机构信息

Institute of Chemistry , University of Graz , NAWI Graz , Heinrichstrasse 28 , A-8010 Graz , Austria . Email:

Institute of Chemical Research of Catalonia (ICIQ) , The Barcelona Institute of Science and Technology (BIST) , Av. Països Catalans 16 , E-43007 Tarragona , Spain.

出版信息

Chem Sci. 2019 Oct 18;10(48):11141-11146. doi: 10.1039/c9sc04752b. eCollection 2019 Dec 28.

Abstract

The catalytic enantioselective synthesis of the chiral key intermediate of the antidepressant (-)-paroxetine is demonstrated as a continuous flow process on multi-gram scale. The critical step is a solvent-free organocatalytic conjugate addition followed by a telescoped reductive amination-lactamization-amide/ester reduction sequence. Due to the efficient heterogeneous catalysts and the solvent-free or highly concentrated conditions applied, the flow method offers key advances in terms of productivity and sustainability compared to earlier batch approaches.

摘要

抗抑郁药(-)-帕罗西汀的手性关键中间体的催化对映选择性合成在多克规模上以连续流动过程得到证实。关键步骤是无溶剂有机催化共轭加成,随后是缩合还原胺化-内酰胺化-酰胺/酯还原序列。由于采用了高效的多相催化剂以及无溶剂或高浓度条件,与早期的间歇方法相比,流动方法在生产率和可持续性方面取得了关键进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abc7/7069365/60bb83851c58/c9sc04752b-f1.jpg

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