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双金催化:σ,π-丙炔炔基和羟基桥联双核金配合物作为易于制备和易于操作的预催化剂。

Dual gold catalysis: σ,π-propyne acetylide and hydroxyl-bridged digold complexes as easy-to-prepare and easy-to-handle precatalysts.

机构信息

Organisch-Chemisches Institut, Ruprecht-Karls-Universität Heidelberg, Im Neuenheimer Feld 270, 69120 Heidelberg, Germany.

出版信息

Chemistry. 2013 Jan 14;19(3):1058-65. doi: 10.1002/chem.201203010. Epub 2012 Dec 19.

Abstract

A series of dinuclear gold σ,π-propyne acetylide complexes were prepared and tested for their catalytic ability in dual gold catalysis that was based on the reaction of an electrophilic π-complex of gold with a gold acetylide. The air-stable and storable catalysts can be isolated as silver-free catalysts in their activated form. These dual catalysts allow a fast initiation phase for the dual catalytic cycles without the need for additional additives for acetylide formation. Because propyne serves as a throw-away ligand, no traces of the precatalyst are generated. Based on the fast initiation process, side products are minimized and reaction rates are higher for these catalysts. A series of test reactions were used to demonstrate the general applicability of these catalysts. Lower catalyst loadings, faster reaction rates, and better selectivity, combined with the practicability of these catalysts, make them ideal catalysts for dual gold catalysis.

摘要

一系列双核金σ,π-丙炔基乙炔配合物被制备并测试其在双金催化中的催化能力,该催化是基于金的亲电π-络合物与金乙炔化物的反应。这些空气稳定且可储存的催化剂可以作为无银的催化剂以其活化形式被分离出来。这些双催化剂允许双催化循环的快速引发阶段,而无需额外的添加剂来形成乙炔化物。因为丙炔用作丢弃配体,所以没有前催化剂的痕迹生成。基于快速的引发过程,减少了副产物的生成,并且这些催化剂的反应速率更高。一系列的测试反应被用来证明这些催化剂的普遍适用性。较低的催化剂负载、更快的反应速率和更好的选择性,加上这些催化剂的实用性,使它们成为双金催化的理想催化剂。

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