Gorin David J, Toste F Dean
Department of Chemistry, University of California at Berkeley, Berkeley, California 94720, USA.
Nature. 2007 Mar 22;446(7134):395-403. doi: 10.1038/nature05592.
Transition-metal catalysts containing gold present new opportunities for chemical synthesis, and it is therefore not surprising that these complexes are beginning to capture the attention of the chemical community. Cationic phosphine-gold(i) complexes are especially versatile and selective catalysts for a growing number of synthetic transformations. The reactivity of these species can be understood in the context of theoretical studies on gold; relativistic effects are especially helpful in rationalizing the reaction manifolds available to gold catalysts. This Review draws on experimental and computational data to present our current understanding of homogeneous gold catalysis, focusing on previously unexplored reactivity and its application to the development of new methodology.
含金的过渡金属催化剂为化学合成带来了新机遇,因此这些配合物开始引起化学界的关注也就不足为奇了。阳离子膦金(I)配合物对于越来越多的合成转化反应而言是特别通用且具有选择性的催化剂。这些物质的反应活性可以在关于金的理论研究背景下得到理解;相对论效应对于合理化金催化剂可用的反应历程特别有帮助。本综述借鉴实验和计算数据,阐述了我们目前对均相金催化的理解,重点关注此前未被探索的反应活性及其在新方法开发中的应用。