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N-杂环卡宾金(I)配合物的合成。

Synthesis of N-heterocyclic carbene gold(I) complexes.

机构信息

VITO (Flemish Institute for Technological Research), Separation and Conversion Technology, Mol, Belgium.

Department of Chemistry and Centre for Sustainable Chemistry, Ghent University, Ghent, Belgium.

出版信息

Nat Protoc. 2021 Mar;16(3):1476-1493. doi: 10.1038/s41596-020-00461-6. Epub 2021 Jan 27.

DOI:10.1038/s41596-020-00461-6
PMID:33504989
Abstract

N-heterocyclic carbene gold(I) chloride and hydroxide complexes are regularly used as synthons to access various oxygen-, nitrogen- or carbon-bound gold complexes. They are also widely employed as efficient catalysts in addition reactions of hydroelements to unsaturated bonds and in several rearrangement and decarboxylation protocols. Here we describe the multigram synthesis of the most common mononuclear N-heterocyclic carbene gold(I) chloride complexes bearing the N,N'-bis-(2,4,6-trimethylphenyl)imidazol-2-ylidene (IMes), N,N'-bis(2,6-diisopropylphenyl)imidazol-2-ylidene (IPr) and N,N'-bis(2,6-bis(diphenylmethyl)-4-methylphenyl)imidazol-2-ylidene (IPr*) ligands. Their synthesis is achieved through the straightforward and practical weak base approach in a total time of 4-5 h. This straightforward methodology is conducted under air and possesses considerable advantages over alternative routes, such as the use of a sustainable reaction solvent, minimal amounts of a mild base and commercially available or easily obtained starting materials. Additionally, we describe the synthesis of the mononuclear gold(I) hydroxide complex bearing the IPr ligand, using the state-of-the-art method requiring 24 h. Finally, the improved synthesis of the dinuclear gold(I) hydroxide complex [{Au(IPr)}(μ-OH)][BF] is described (~3 h). All procedures can be performed by researchers with standard training and lead to high yields (76-99%) of microanalytically pure bench-stable materials.

摘要

N-杂环卡宾金(I)氯和氢氧化物配合物通常被用作前体,以获得各种氧、氮或碳键合的金配合物。它们也被广泛用作氢元素加成到不饱和键以及在几种重排和脱羧反应中的有效催化剂。在这里,我们描述了最常见的单核 N-杂环卡宾金(I)氯配合物的多克合成,这些配合物带有 N,N'-双-(2,4,6-三甲基苯基)咪唑-2-亚基(IMes)、N,N'-双-(2,6-二异丙基苯基)咪唑-2-亚基(IPr)和 N,N'-双-(2,6-双(二苯基甲基)-4-甲基苯基)咪唑-2-亚基(IPr*)配体。它们的合成是通过简单实用的弱碱方法在 4-5 小时内完成的。这种简单的方法在空气中进行,与替代路线相比具有许多优势,例如使用可持续的反应溶剂、少量温和的碱和商业上可获得或容易获得的起始材料。此外,我们描述了使用需要 24 小时的最先进方法合成带有 IPr 配体的单核金(I)氢氧化物配合物。最后,描述了二核金(I)氢氧化物配合物[{Au(IPr)}(μ-OH)][BF]的改进合成(~3 小时)。所有的程序都可以由经过标准培训的研究人员进行,得到高产量(76-99%)的微量分析纯的稳定材料。

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