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通过对映守恒催化 S1 反应构建季立体中心。

Quaternary stereocentres via an enantioconvergent catalytic S1 reaction.

机构信息

Department of Chemistry and Chemical Biology, Harvard University, Cambridge, MA, USA.

出版信息

Nature. 2018 Apr;556(7702):447-451. doi: 10.1038/s41586-018-0042-1. Epub 2018 Apr 25.

Abstract

The unimolecular nucleophilic substitution (S1) mechanism features prominently in every introductory organic chemistry course. In principle, stepwise displacement of a leaving group by a nucleophile via a carbocationic intermediate enables the construction of highly congested carbon centres. However, the intrinsic instability and high reactivity of the carbocationic intermediates make it very difficult to control product distributions and stereoselectivity in reactions that proceed via S1 pathways. Here we report asymmetric catalysis of an S1-type reaction mechanism that results in the enantioselective construction of quaternary stereocentres from racemic precursors. The transformation relies on the synergistic action of a chiral hydrogen-bond-donor catalyst with a strong Lewis-acid promoter to mediate the formation of tertiary carbocationic intermediates at low temperature and to achieve high levels of control over reaction enantioselectivity and product distribution. This work provides a foundation for the enantioconvergent synthesis of other fully substituted carbon stereocentres.

摘要

单分子亲核取代(S1)机制在每一门有机化学入门课程中都占有重要地位。原则上,通过碳阳离子中间体逐步取代离去基团的亲核试剂可以构建高度拥挤的碳中心。然而,碳阳离子中间体的固有不稳定性和高反应性使得通过 S1 途径进行的反应很难控制产物分布和立体选择性。在这里,我们报告了 S1 型反应机制的不对称催化,该反应导致对映选择性地从外消旋前体制备季立体中心。该转化依赖于手性氢键供体催化剂与强路易斯酸促进剂的协同作用,以在低温下介导叔碳阳离子中间体的形成,并实现对反应对映选择性和产物分布的高度控制。这项工作为其他完全取代的碳立体中心的对映收敛合成奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c66d/6009832/c29167622a91/nihms948749f1.jpg

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