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使用氟化砜、亚砜和硫化物进行的选择性氟烷基化反应。

Selective fluoroalkylations with fluorinated sulfones, sulfoxides, and sulfides.

作者信息

Prakash G K Surya, Hu Jinbo

机构信息

Loker Hydrocarbon Research Institute and Department of Chemistry, University of Southern California, Los Angeles, California 90089-1661, USA.

出版信息

Acc Chem Res. 2007 Oct;40(10):921-30. doi: 10.1021/ar700149s. Epub 2007 Aug 21.

Abstract

Efficient fluoroalkylations have been proven to be a highly useful strategy for the synthesis of bioactive fluorine-containing compounds and other materials. The design and use of a single category of reagents for multiple synthetic goals are much more attractive to preparative organic chemists. In this Account, we show how we have succeeded in the nucleophilic trifluoromethylation, difluoromethylation, difluoromethylenation, (phenylsulfonyl)difluoromethylation, (phenylthio)difluoromethylation, and monofluoromethylation as well as radical (phenylsulfonyl)difluoromethylation and electrophilic difluoromethylation by using fluorinated sulfones, sulfoxides, sulfides, or fluorinated sulfonium salts. The chemistry not only provides practically powerful synthetic methods, but the molecular design concept that we have developed may also be adopted to tackle other related chemical problems.

摘要

高效氟烷基化已被证明是合成生物活性含氟化合物和其他材料的一种非常有用的策略。设计和使用单一类别的试剂来实现多个合成目标,对有机合成化学家更具吸引力。在本综述中,我们展示了如何通过使用氟化砜、亚砜、硫化物或氟化锍盐成功实现亲核三氟甲基化、二氟甲基化、二氟亚甲基化、(苯磺酰基)二氟甲基化、(苯硫基)二氟甲基化和单氟甲基化,以及自由基(苯磺酰基)二氟甲基化和亲电二氟甲基化。该化学方法不仅提供了实用且强大的合成方法,而且我们所开发的分子设计概念也可用于解决其他相关化学问题。

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