Nesterov Vitaly, Reiter Dominik, Bag Prasenjit, Frisch Philipp, Holzner Richard, Porzelt Amelie, Inoue Shigeyoshi
Department of Chemistry, WACKER-Institute of Silicon Chemistry and Catalysis Research Center , Technische Universität München , Lichtenbergstrasse 4 , Garching bei München 85748 , Germany.
Chem Rev. 2018 Oct 10;118(19):9678-9842. doi: 10.1021/acs.chemrev.8b00079. Epub 2018 Jul 3.
Since the discovery of the first stable N-heterocyclic carbene (NHC) in the beginning of the 1990s, these divalent carbon species have become a common and available class of compounds, which have found numerous applications in academic and industrial research. Their important role as two-electron donor ligands, especially in transition metal chemistry and catalysis, is difficult to overestimate. In the past decade, there has been tremendous research attention given to the chemistry of low-coordinate main group element compounds. Significant progress has been achieved in stabilization and isolation of such species as Lewis acid/base adducts with highly tunable NHC ligands. This has allowed investigation of numerous novel types of compounds with unique electronic structures and opened new opportunities in the rational design of novel organic catalysts and materials. This Review gives a general overview of this research, basic synthetic approaches, key features of NHC-main group element adducts, and might be useful for the broad research community.
自20世纪90年代初发现首个稳定的氮杂环卡宾(NHC)以来,这些二价碳物种已成为一类常见且可得的化合物,在学术和工业研究中有着众多应用。它们作为双电子供体配体的重要作用,尤其是在过渡金属化学和催化领域,难以被高估。在过去十年中,低配位主族元素化合物的化学研究受到了极大关注。在将此类物种稳定并分离为具有高度可调谐NHC配体的路易斯酸/碱加合物方面取得了重大进展。这使得人们能够研究众多具有独特电子结构的新型化合物,并为合理设计新型有机催化剂和材料开辟了新机遇。本综述对该研究、基本合成方法、NHC-主族元素加合物的关键特性进行了总体概述,可能对广大研究群体有用。