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易于获得对映体纯的杂环硅手性鏻阳离子以及氢分子释放的匹配/不匹配情况。

Easy Access to Enantiomerically Pure Heterocyclic Silicon-Chiral Phosphonium Cations and the Matched/Mismatched Case of Dihydrogen Release.

作者信息

Fontana Nicolò, Espinosa-Jalapa Noel Angel, Seidl Michael, Bauer Jonathan O

机构信息

Institut für Anorganische Chemie, Fakultät für Chemie und Pharmazie, Universität Regensburg, Universitätsstraße 31, 93053, Regensburg, Germany.

出版信息

Chemistry. 2021 Feb 5;27(8):2649-2653. doi: 10.1002/chem.202005171. Epub 2021 Jan 18.

Abstract

Phosphonium ions are widely used in preparative organic synthesis and catalysis. The provision of new types of cations that contain both functional and chiral information is a major synthetic challenge and can open up new horizons in asymmetric cation-directed and Lewis acid catalysis. We discovered an efficient methodology towards new Si-chiral four-membered CPSSi* heterocyclic cations. Three synthetic approaches are presented. The stereochemical sequence of anchimerically assisted cation formation with B(C F ) and subsequent hydride addition was fully elucidated and proceeds with excellent preservation of the chiral information at the stereogenic silicon atom. Also the mechanism of dihydrogen release from a protonated hydrosilane was studied in detail by the help of Si-centered chirality as stereochemical probe. Chemoselectivity switch (dihydrogen release vs. protodesilylation) can easily be achieved through slight modifications of the solvent. A matched/mismatched case was identified and the intermolecularity of this reaction supported by spectroscopic, kinetic, deuterium-labeling experiments, and quantum chemical calculations.

摘要

鏻离子在有机合成制备和催化中被广泛应用。提供同时包含官能团信息和手性信息的新型阳离子是一项重大的合成挑战,并且能够为不对称阳离子导向和路易斯酸催化开辟新的前景。我们发现了一种合成新型硅手性四元CPSSi*杂环阳离子的有效方法。文中介绍了三种合成方法。详细阐明了用B(CF)进行邻基参与的阳离子形成以及随后的氢化物加成的立体化学过程,该过程在立体中心硅原子上能出色地保留手性信息。此外,借助以硅为中心的手性作为立体化学探针,详细研究了质子化硅烷释放氢气的机理。通过对溶剂进行微小改变就能轻松实现化学选择性切换(氢气释放与原硅烷基化)。确定了匹配/不匹配的情况,并通过光谱、动力学、氘标记实验和量子化学计算支持了该反应的分子间性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5785/7898527/3b609d837172/CHEM-27-2649-g001.jpg

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