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α-支链醛的手性催化不对称α-官能化。

Catalytic Asymmetric α-Functionalization of α-Branched Aldehydes.

机构信息

Department of Organic Chemistry I, University of the Basque Country UPV/EHU, Manuel Lardizabal 3, 20018 Donostia-San Sebastián, Spain.

IKERBASQUE, Basque Foundation for Science, Plaza Euskadi 5, 48009 Bilbao, Spain.

出版信息

Molecules. 2023 Mar 16;28(6):2694. doi: 10.3390/molecules28062694.

Abstract

Aldehydes constitute a main class of organic compounds widely applied in synthesis. As such, catalyst-controlled enantioselective α-functionalization of aldehydes has attracted great interest over the years. In this context, α-branched aldehydes are especially challenging substrates because of reactivity and selectivity issues. Firstly, the transient trisubstituted enamines and enolates resulting upon treatment with an aminocatalyst or a base, respectively, would exhibit attenuated reactivity; secondly, mixtures of - and -configured enamines/enolates may be formed; and third, effective face-discrimination on such trisubstituted sp carbon intermediates by the incoming electrophilic reagent is not trivial. Despite these issues, in the last 15 years, several catalytic approaches for the α-functionalization of prostereogenic α-branched aldehydes that proceed in useful yields and diastereo- and enantioselectivity have been uncovered. Developments include both organocatalytic and metal-catalyzed approaches as well as dual catalysis strategies for forging new carbon-carbon and carbon-heteroatom (C-O, N, S, F, Cl, Br, …) bond formation at Cα of the starting aldehyde. In this review, some key early contributions to the field are presented, but focus is on the most recent methods, mainly covering the literature from year 2014 onward.

摘要

醛类构成了一类广泛应用于合成的有机化合物。因此,近年来,人们对催化剂控制的醛的对映选择性α-官能化反应产生了极大的兴趣。在这种情况下,α-支链醛是特别具有挑战性的底物,因为存在反应性和选择性问题。首先,用氨基催化剂或碱处理后生成的瞬态三取代烯胺和烯醇盐的反应性会减弱;其次,可能会形成 - 和 - 构型的烯胺/烯醇盐的混合物;第三,对于此类三取代的 sp 碳中间体,亲电试剂的有效面选择性并非微不足道。尽管存在这些问题,但在过去的 15 年中,已经发现了几种用于对映选择性地对前手性α-支链醛进行α-官能化的催化方法,这些方法具有较高的产率和非对映选择性和对映选择性。这些方法包括有机催化和金属催化方法以及双催化策略,用于在起始醛的 Cα 上形成新的碳-碳和碳-杂原子(C-O、N、S、F、Cl、Br、...)键。在这篇综述中,介绍了该领域的一些早期关键贡献,但重点是最近的方法,主要涵盖了 2014 年以后的文献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f26/10056299/449834b801a1/molecules-28-02694-sch033.jpg

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