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单金和双金中间体:因果关系还是独立性?

Monoaurated diaurated intermediates: causality or independence?

作者信息

Anania Mariarosa, Jašíková Lucie, Zelenka Jan, Shcherbachenko Elena, Jašík Juraj, Roithová Jana

机构信息

Department of Organic Chemistry, Faculty of Science, Charles University Hlavova 2030/8 12843 Prague 2 Czech Republic.

Institute for Molecules and Materials, Radboud University Heyendaalseweg 135 6525 AJ Nijmegen Netherlands

出版信息

Chem Sci. 2019 Dec 13;11(4):980-988. doi: 10.1039/c9sc05662a.

Abstract

Diaurated intermediates of gold-catalysed reactions have been a long-standing subject of debate. Although diaurated complexes were regarded as a drain of active monoaurated intermediates in catalytic cycles, they were also identified as the products of gold-gold cooperation in dual-activation reactions. This study shows investigation of intermediates in water addition to alkynes catalysed by [(IPr)Au(CHCN)(BF)]. Electrospray ionisation mass spectrometry (ESI-MS) allowed us to detect both monoaurated and diaurated complexes in this reaction. Infrared photodissociation spectra of the trapped complexes show that the structure of the intermediates corresponds to α-gold ketone intermediates protonated or aurated at the oxygen atom. Delayed reactant labelling experiments provided the half life of the intermediates in reaction of 1-phenylpropyne (∼7 min) and the kinetic isotope effects for hydrogen introduction to the carbon atom (KIE ∼ 4-6) and for the protodeauration (KIE ∼ 2). The results suggest that the ESI-MS detected monoaurated and diaurated complexes report on species with a very similar or the same kinetics in solution. Kinetic analysis of the overall reaction showed that the reaction rate is first-order dependent on the concentration of the gold catalyst. Finally, all results are consistent with the reaction mechanism proceeding monoaurated neutral α-gold ketone intermediates only.

摘要

金催化反应的重氮金中间体一直是一个长期争论的话题。尽管重氮金配合物在催化循环中被视为活性单金中间体的消耗物,但它们也被确定为双活化反应中金银协同作用的产物。本研究展示了对[(IPr)Au(CHCN)(BF)]催化炔烃水合反应中间体的研究。电喷雾电离质谱(ESI-MS)使我们能够在该反应中检测到单金和重氮金配合物。捕获配合物的红外光解离光谱表明,中间体的结构对应于在氧原子处质子化或金化的α-金酮中间体。延迟反应物标记实验给出了1-苯基丙炔反应中中间体的半衰期(约7分钟)以及氢引入碳原子的动力学同位素效应(KIE约为4-6)和质子去金化的动力学同位素效应(KIE约为2)。结果表明,ESI-MS检测到的单金和重氮金配合物反映了溶液中具有非常相似或相同动力学的物种。对整个反应的动力学分析表明,反应速率与金催化剂的浓度呈一级依赖关系。最后,所有结果都与仅通过单金中性α-金酮中间体进行的反应机理一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e51/8146099/7dcf74cc22b6/c9sc05662a-s1.jpg

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