Institute of Organic Chemistry, RWTH Aachen University, Landoltweg 1, 52074 Aachen, Germany.
Chemistry. 2012 Aug 13;18(33):10212-25. doi: 10.1002/chem.201200287. Epub 2012 Jun 13.
While both organocatalysis and gold catalysis have their roots deeply entrenched in the landscape of modern organic chemistry, an exciting trend in the complementary merging of organocatalysis and especially Au(I) catalysis has emerged in the last four years. This niche area has been developing rapidly and this minireview serves to pin-point the fundamental concepts guiding reaction design in these binary catalytic systems. Moreover, the proven synthetic utility of organo/Au(I) multicatalytic systems in accessing molecular frameworks, previously a challenge to single catalytic systems, has resulted in this new concept permeating numerous areas of organocatalysis, such as primary/secondary amine, Brønsted acid, hydrogen-bonding as well as N-heterocyclic carbene (NHC) catalysis. The first detailed account of these recent developments is systematically presented.
虽然有机催化和金催化都深深扎根于现代有机化学的领域,但在过去四年中,有机催化特别是 Au(I)催化的互补融合出现了令人兴奋的趋势。这个利基领域发展迅速,这篇迷你评论旨在指出这些二元催化体系中指导反应设计的基本概念。此外,有机/Au(I)多相催化体系在获得分子框架方面的合成实用性已得到证实,这些分子框架以前是单催化体系的挑战,这导致了这一新概念渗透到有机催化的许多领域,如伯/仲胺、布朗斯台德酸、氢键以及 N-杂环卡宾(NHC)催化。系统地呈现了这些最新发展的第一个详细描述。