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C-C 多重键的催化不对称羟烷化反应。

Catalytic Asymmetric Hydroalkoxylation of C-C Multiple Bonds.

机构信息

Max-Planck-Institut für Kohlenforschung, Kaiser Wilhelm-Platz 1, 45470 Mülheim an der Ruhr, Germany.

出版信息

Chem Rev. 2021 Dec 22;121(24):14649-14681. doi: 10.1021/acs.chemrev.1c00620. Epub 2021 Dec 3.

Abstract

Asymmetric hydroalkoxylation of alkenes constitutes a redox-neutral and 100% atom-economical strategy toward enantioenriched oxygenated building blocks from readily available starting materials. Despite their great potential, catalytic enantioselective additions of alcohols across a C-C multiple bond are particularly underdeveloped, especially compared to other hydrofunctionalization methods such as hydroamination. However, driven by some recent innovations, e.g., asymmetric MHAT methods, asymmetric photocatalytic methods, and the development of extremely strong chiral Brønsted acids, there has been a gratifying surge of reports in this burgeoning field. The goal of this review is to survey the growing landscape of asymmetric hydroalkoxylation by highlighting exciting new advances, deconstructing mechanistic underpinnings, and drawing insight from related asymmetric hydroacyloxylation and hydration. A deep appreciation of the underlying principles informs an understanding of the various selectivity parameters and activation modes in the realm of asymmetric alkene hydrofunctionalization while simultaneously evoking the outstanding challenges to the field moving forward. Overall, we aim to lay a foundation for cross-fertilization among various catalytic fields and spur further innovation in asymmetric hydroalkoxylations of C-C multiple bonds.

摘要

烯烃的不对称羟烷化反应是一种氧化还原中性且 100%原子经济性的策略,可从易得的起始原料中构建对映富集的含氧砌块。尽管它们具有巨大的潜力,但醇在 C-C 多重键上的催化对映选择性加成反应特别不发达,尤其是与其他氢官能化方法(如氢胺化)相比。然而,受到一些最近的创新的推动,例如不对称 MHAT 方法、不对称光催化方法和极强的手性布朗斯台德酸的发展,这个新兴领域的报道数量令人欣喜地激增。本综述的目的是通过突出令人兴奋的新进展、解构机械基础并从相关的不对称氢烷氧基化和水合作用中汲取见解,来调查不对称羟烷化反应的不断发展的领域。对基本原理的深入了解为理解不对称烯烃氢官能化反应中的各种选择性参数和活化模式提供了信息,同时也提出了该领域未来面临的突出挑战。总体而言,我们旨在为各种催化领域之间的交叉授粉奠定基础,并激发 C-C 多重键不对称羟烷化反应的进一步创新。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a89/8704240/14cd046a5fa7/cr1c00620_0001.jpg

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