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碳酸钾催化醇与硅烷反应合成硅醚的温和方法。

Mild synthesis of silyl ethers via potassium carbonate catalyzed reactions between alcohols and hydrosilanes.

机构信息

University of South Carolina, Department of Chemistry and Biochemistry, Columbia, SC 29208, USA.

出版信息

Org Biomol Chem. 2018 May 9;16(18):3415-3418. doi: 10.1039/c8ob00464a.

Abstract

A method has been developed for the silanolysis of alcohols using an abundant and non-corrosive base K2CO3 as a catalyst. Reactions between a variety of alcohols and hydrosilanes generate silyl ethers under mild conditions. The use of hydrosilanes leads to the formation of H2 as the only byproduct thus avoiding the formation of stoichiometric strong acids. The mild conditions lead to a wide scope of possible alcohol substrates and good functional group tolerance. Selective alcohol silanolysis is also observed in the presence of reactive C-H bonds, lending this method for extensive use in protection group chemistry.

摘要

已开发出一种使用丰富且非腐蚀性的碱 K2CO3 作为催化剂的醇硅醇解方法。各种醇与硅烷在温和条件下反应生成硅醚。使用硅烷导致仅形成 H2 作为唯一的副产物,从而避免形成化学计量强酸。温和的条件导致可能的醇底物范围广泛,并且对官能团具有良好的耐受性。在存在反应性 C-H 键的情况下也观察到选择性醇硅醇解,这使得该方法在保护基化学中得到广泛应用。

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