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用于精细化学品可扩展有机合成的多相光催化氧化流动化学

Heterogeneous photoredox flow chemistry for the scalable organosynthesis of fine chemicals.

作者信息

Yang Can, Li Run, Zhang Kai A I, Lin Wei, Landfester Katharina, Wang Xinchen

机构信息

State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou, 350002, P. R. China.

Max Planck Institute for Polymer Research, Ackermannweg 10, 55128, Mainz, Germany.

出版信息

Nat Commun. 2020 Mar 6;11(1):1239. doi: 10.1038/s41467-020-14983-w.

Abstract

Large-scale photochemical synthesis of high value chemicals under mild conditions is an ideal method of green chemical production. However, a scalable photocatalytic process has been barely reported due to the costly preparation, low stability of photosensitizers and critical reaction conditions required for classical photocatalysts. Here, we report the merging of flow chemistry with heterogeneous photoredox catalysis for the facile production of high value compounds in a continuous flow reactor with visible light at room temperature in air. In the flow reactor system, polymeric carbon nitrides, which are cheap, sustainable and stable heterogeneous photocatalysts, are immobilized onto glass beads and fibers, demonstrating a highly flexible construction possibility for devices of the photocatalytic materials. As an example of the production of high value chemicals, important chemical structures such as cyclobutanes, which are basic building blocks for many pharmaceutical compounds, like magnosalin, are synthesized in flow with high catalytic efficiency and stability.

摘要

在温和条件下大规模光化学合成高价值化学品是绿色化学生产的理想方法。然而,由于制备成本高、光敏剂稳定性低以及传统光催化剂所需的苛刻反应条件,可扩展的光催化过程鲜有报道。在此,我们报道了流动化学与多相光氧化还原催化的结合,用于在室温空气中可见光下的连续流动反应器中轻松生产高价值化合物。在流动反应器系统中,廉价、可持续且稳定的多相光催化剂聚合氮化碳被固定在玻璃珠和纤维上,展示了光催化材料装置具有高度灵活的构建可能性。作为生产高价值化学品的一个例子,许多药物化合物(如马钱子苷)的基本结构单元环丁烷等重要化学结构,在流动过程中以高催化效率和稳定性被合成出来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/725f/7060272/6460667ee9ce/41467_2020_14983_Fig1_HTML.jpg

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