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过渡金属催化的氢借反应中绝对立体化学的控制。

Control of Absolute Stereochemistry in Transition-Metal-Catalysed Hydrogen-Borrowing Reactions.

机构信息

Chemistry Research Laboratory, University of Oxford, Oxford, OX1 3TA, UK.

出版信息

Chemistry. 2020 Oct 9;26(57):12912-12926. doi: 10.1002/chem.202001253. Epub 2020 Sep 11.

Abstract

Hydrogen-borrowing catalysis represents a powerful method for the alkylation of amine or enolate nucleophiles with non-activated alcohols. This approach relies upon a catalyst that can mediate a strategic series of redox events, enabling the formation of C-C and C-N bonds and producing water as the sole by-product. In the majority of cases these reactions have been employed to target achiral or racemic products. In contrast, the focus of this Minireview is upon hydrogen-borrowing-catalysed reactions in which the absolute stereochemical outcome of the process can be controlled. Asymmetric hydrogen-borrowing catalysis is rapidly emerging as a powerful approach for the synthesis of enantioenriched amine and carbonyl containing products and examples involving both C-N and C-C bond formation are presented. A variety of different approaches are discussed including use of chiral auxiliaries, asymmetric catalysis and enantiospecific processes.

摘要

氢借催化代表了一种强大的方法,可以将非活化醇与胺或烯醇亲核试剂进行烷基化。这种方法依赖于一种催化剂,它可以介导一系列策略性的氧化还原事件,从而形成 C-C 和 C-N 键,并将水作为唯一的副产物。在大多数情况下,这些反应被用于靶向手性或外消旋产物。相比之下,本篇综述的重点是氢借催化反应,其中可以控制过程的绝对立体化学结果。不对称氢借催化正在迅速成为合成对映体富集的胺和含羰基产物的有力方法,并且呈现了涉及 C-N 和 C-C 键形成的例子。讨论了多种不同的方法,包括使用手性助剂、不对称催化和对映选择性过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdf8/7589454/0664846eaa44/CHEM-26-12912-g005.jpg

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