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连续流动技术作为利用卡宾、氮宾和苯炔实现创新转化的推动因素。

Continuous Flow Technology as an Enabler for Innovative Transformations Exploiting Carbenes, Nitrenes, and Benzynes.

作者信息

Donnelly Kian, Baumann Marcus

机构信息

School of Chemistry, Science Centre South, University College Dublin, D04 N2E2 Dublin, Ireland.

出版信息

J Org Chem. 2022 Jul 1;87(13):8279-8288. doi: 10.1021/acs.joc.2c00963. Epub 2022 Jun 14.

Abstract

Miniaturization offered by microreactors provides for superb reaction control as well as excellent heat and mass transfer. By performing chemical reactions in microreactors or tubular systems under continuous flow conditions, increased safety can be harnessed which allows exploitation of these technologies for the generation and immediate consumption of high-energy intermediates. This Synopsis demonstrates the use of flow technology to effectively exploit benzynes, carbenes, and nitrenes in synthetic chemistry programs.

摘要

微反应器实现的小型化能够提供卓越的反应控制以及出色的传热和传质性能。通过在连续流动条件下于微反应器或管式系统中进行化学反应,可以提高安全性,从而能够利用这些技术来生成和即时消耗高能中间体。本综述展示了流动技术在合成化学方案中有效利用苯炔、卡宾和氮烯的应用。

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