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金(I)催化中作为设计原则的金-氢-碳氢键

Au⋅⋅⋅H-C Hydrogen Bonds as Design Principle in Gold(I) Catalysis.

作者信息

Darmandeh Heidar, Löffler Julian, Tzouras Nikolaos V, Dereli Busra, Scherpf Thorsten, Feichtner Kai-Stephan, Vanden Broeck Sofie, Van Hecke Kristof, Saab Marina, Cazin Catherine S J, Cavallo Luigi, Nolan Steven P, Gessner Viktoria H

机构信息

Chair of Inorganic Chemistry II, Faculty of Chemistry and Biochemistry, Ruhr-University Bochum, Universitätsstraße 150, 44801, Bochum, Germany.

Department of Chemistry and Centre for Sustainable Chemistry, Ghent University, Krijgslaan 281, S-3, 9000, Ghent, Belgium.

出版信息

Angew Chem Int Ed Engl. 2021 Sep 13;60(38):21014-21024. doi: 10.1002/anie.202108581. Epub 2021 Aug 18.

Abstract

Secondary ligand-metal interactions are decisive in many catalytic transformations. While arene-gold interactions have repeatedly been reported as critical structural feature in many high-performance gold catalysts, we herein report that these interactions can also be replaced by Au⋅⋅⋅H-C hydrogen bonds without suffering any reduction in catalytic performance. Systematic experimental and computational studies on a series of ylide-substituted phosphines featuring either a PPh ( YPhos) or PCy ( YPhos) moiety showed that the arene-gold interaction in the aryl-substituted compounds is efficiently compensated by the formation of Au⋅⋅⋅H-C hydrogen bonds. The strongest interaction is found with the C-H moiety next to the onium center, which due to the polarization results in remarkably strong interactions with the shortest Au⋅⋅⋅H-C hydrogen bonds reported to date. Calorimetric studies on the formation of the gold complexes further confirmed that the YPhos and YPhos ligands form similarly stable complexes. Consequently, both ligands showed the same catalytic performance in the hydroamination, hydrophenoxylation and hydrocarboxylation of alkynes, thus demonstrating that Au⋅⋅⋅H-C hydrogen bonds are equally suited for the generation of highly effective gold catalysts than gold-arene interactions. The generality of this observation was confirmed by a comparative study between a biaryl phosphine ligand and its cyclohexyl-substituted derivative, which again showed identical catalytic performance. These observations clearly support Au⋅⋅⋅H-C hydrogen bonds as fundamental secondary interactions in gold catalysts, thus further increasing the number of design elements that can be used for future catalyst construction.

摘要

二级配体 - 金属相互作用在许多催化转化过程中起决定性作用。虽然在许多高性能金催化剂中,芳烃 - 金相互作用一再被报道为关键的结构特征,但我们在此报告,这些相互作用也可以被金⋅⋅⋅H - C氢键取代,而不会使催化性能有任何降低。对一系列具有PPh(YPhos)或PCy(YPhos)部分的叶立德取代膦进行的系统实验和计算研究表明,芳基取代化合物中的芳烃 - 金相互作用通过形成金⋅⋅⋅H - C氢键得到有效补偿。在鎓中心旁边的C - H部分发现了最强的相互作用,由于极化作用,这种相互作用导致了迄今为止报道的最短的金⋅⋅⋅H - C氢键,从而产生了非常强的相互作用。对金配合物形成的量热研究进一步证实,YPhos和YPhos配体形成了类似稳定的配合物。因此,两种配体在炔烃的氢胺化、氢苯氧基化和氢羧基化反应中表现出相同的催化性能,从而表明金⋅⋅⋅H - C氢键与金 - 芳烃相互作用一样,同样适用于生成高效的金催化剂。通过联芳基膦配体与其环己基取代衍生物之间进行的比较研究,证实了这一观察结果的普遍性,该研究再次表明了相同的催化性能。这些观察结果清楚地支持金⋅⋅⋅H - C氢键作为金催化剂中基本的二级相互作用,从而进一步增加了可用于未来催化剂构建的设计元素的数量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3b3/8518757/2935e23161e8/ANIE-60-21014-g003.jpg

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