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通过脱氢硅-氧偶联实现的立体选择性醇硅烷化反应:硅立体中心硅烷的铜-氢催化非酶动力学拆分的范围、局限性及机理

Stereoselective alcohol silylation by dehydrogenative Si-O coupling: scope, limitations, and mechanism of the cu-h-catalyzed non-enzymatic kinetic resolution with silicon-stereogenic silanes.

作者信息

Rendler Sebastian, Plefka Oliver, Karatas Betül, Auer Gertrud, Fröhlich Roland, Mück-Lichtenfeld Christian, Grimme Stefan, Oestreich Martin

机构信息

Organisch-Chemisches Institut, Westfälische Wilhelms-Universität Münster, Corrensstrasse 40, 48149 Münster, Germany.

出版信息

Chemistry. 2008;14(36):11512-28. doi: 10.1002/chem.200801377.

DOI:10.1002/chem.200801377
PMID:19021177
Abstract

Ligand-stabilized copper(I)-hydride catalyzes the dehydrogenative Si-O coupling of alcohols and silanes-a process that was found to proceed without racemization at the silicon atom if asymmetrically substituted. The present investigation starts from this pivotal observation since silicon-stereogenic silanes are thereby suitable for the reagent-controlled kinetic resolution of racemic alcohols, in which asymmetry at the silicon atom enables discrimination of enantiomeric alcohols. In this full account, we summarize our efforts to systematically examine this unusual strategy of diastereoselective alcohol silylation. Ligand (sufficient reactivity with moderately electron-rich monophosphines), silane (reasonable diastereocontrol with cyclic silanes having a distinct substitution pattern) as well as substrate identification (chelating donor as a requirement) are introductorily described. With these basic data at hand, the substrate scope was defined employing enantiomerically enriched tert-butyl-substituted 1-silatetraline and highly reactive 1-silaindane. The synthetic part is complemented by the determination of the stereochemical course at the silicon atom in the Si-O coupling step followed by its quantum-chemical analysis thus providing a solid mechanistic picture of this remarkable transformation.

摘要

配体稳定的氢化铜(I)催化醇与硅烷的脱氢硅-氧偶联反应——如果硅原子不对称取代,该过程在硅原子处不会发生外消旋。本研究从这一关键观察结果出发,因为硅立体异构硅烷因此适用于外消旋醇的试剂控制动力学拆分,其中硅原子处的不对称性能够区分对映体醇。在这篇完整的报告中,我们总结了我们为系统研究这种非对映选择性醇硅烷化的不寻常策略所做的努力。介绍了配体(与中等富电子单膦具有足够的反应性)、硅烷(对具有独特取代模式的环状硅烷具有合理的非对映控制)以及底物鉴定(需要螯合供体)。有了这些基础数据,使用对映体富集的叔丁基取代的1-硅杂萘和高反应性的1-硅茚来确定底物范围。合成部分通过确定硅-氧偶联步骤中硅原子处的立体化学过程,随后进行量子化学分析来补充,从而为这一显著转化提供了坚实的机理图景。

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