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打磨璞玉:硅烷的“铜-氢”催化作用

Polishing a diamond in the rough: "Cu--H" catalysis with silanes.

作者信息

Rendler Sebastian, Oestreich Martin

机构信息

Organisch-Chemisches Institut, Westfälische Wilhelms-Universität Münster, Corrensstrasse 40, 48149 Münster, Germany.

出版信息

Angew Chem Int Ed Engl. 2007;46(4):498-504. doi: 10.1002/anie.200602668.

Abstract

The value of a novel chemical transformation is often underappreciated at the time of its discovery. The reasons are doubtlessly manifold, but the "chemical zeitgeist" subtly determines how the new reaction will be received by the chemical community. The enantioselective reduction of carbonyls by copper-catalyzed hydrosilylation was certainly outshone by other asymmetric hydrogenation techniques. A seminal report at an early stage indicated the considerable potential of this catalytic process, yet it was disregarded for more than a decade. A refined mechanistic picture in connection with a plethora of new chiral ligands then led to copper-catalyzed 1,2- as well as 1,4-reductions of carbonyl compounds with excellent levels of enantioselection at high substrate-to-catalyst ratios and even more remarkable substrate-to-ligand ratios. The tide is turning for inexpensive copper catalysts in asymmetric hydride transfer reactions!

摘要

一种新型化学转化的价值在其被发现时往往未得到充分重视。原因无疑是多方面的,但“化学时代精神”微妙地决定了新反应将如何被化学界所接受。通过铜催化的硅氢化反应对羰基进行对映选择性还原,肯定被其他不对称氢化技术所掩盖。早期的一份开创性报告指出了这一催化过程的巨大潜力,但十多年来它一直被忽视。随后,结合大量新型手性配体的精细机理图景,实现了在高底物与催化剂比例甚至更显著的底物与配体比例下,铜催化羰基化合物的1,2-以及1,4-还原反应,对映选择性极高。在不对称氢化物转移反应中,廉价的铜催化剂的形势正在转变!

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