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使用新型氟化裂解策略进行二氟烷基实体的固相有机合成:第1部分。连接基的开发:范围和局限性。

Solid-phase organic synthesis of difluoroalkyl entities using a novel fluorinating cleavage strategy: part 1. Linker development: scope and limitations.

作者信息

Wiehn Matthias S, Lindell Stephen D, Bräse Stefan

机构信息

Institut fur Organische Chemie, Karlsruhe Institute of Technology, Fritz-Haber-Weg 6, 76131 Karlsruhe, Germany.

出版信息

J Comb Chem. 2009 Nov-Dec;11(6):960-81. doi: 10.1021/cc900090p.

Abstract

An efficient method to synthesize gem-difluorinated compounds on solid supports is described. The strategy is based on the design of a novel sulfur linker system that enables, to the best of our knowledge for the first time, the release of target structures from the resin under simultaneous fluorination. Starting from an immobilized dithiol, coupling with an excess of aldehyde or ketone furnished dithianes. These can be further functionalized prior to release from the resin using our newly developed fluorinating cleavage conditions. Amide forming reactions, palladium-catalyzed reactions (Heck, Suzuki, and Sonogashira couplings), reductions, alkylations, and olefinations were successfully explored on the linker. The difluorinated target substances were obtained in modest to excellent yields and in high purities.

摘要

描述了一种在固体支持物上合成偕二氟化合物的有效方法。该策略基于一种新型硫连接体系统的设计,据我们所知,这首次实现了在氟化的同时从树脂上释放目标结构。从固定化的二硫醇开始,与过量的醛或酮偶联得到二硫烷。在使用我们新开发的氟化裂解条件从树脂上释放之前,这些二硫烷可以进一步官能化。在连接体上成功探索了酰胺形成反应、钯催化反应(Heck、Suzuki和Sonogashira偶联)、还原反应、烷基化反应和烯烃化反应。以适度至优异的产率和高纯度获得了二氟代目标物质。

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