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离子型钯/氮杂环卡宾催化体系实现可回收均相催化:机理研究及其在 Mizoroki-Heck 反应中的应用

Ionic Pd/NHC Catalytic System Enables Recoverable Homogeneous Catalysis: Mechanistic Study and Application in the Mizoroki-Heck Reaction.

作者信息

Eremin Dmitry B, Denisova Ekaterina A, Yu Kostyukovich Alexander, Martens Jonathan, Berden Giel, Oomens Jos, Khrustalev Victor N, Chernyshev Victor M, Ananikov Valentine P

机构信息

Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Leninsky Pr. 47, Moscow, 119991, Russia.

Institute for Molecules and Materials, FELIX Laboratory, Radboud University, Toernooiveld 7c, 6525 ED, Nijmegen, The Netherlands.

出版信息

Chemistry. 2019 Dec 20;25(72):16564-16572. doi: 10.1002/chem.201903221. Epub 2019 Oct 31.

Abstract

N-Heterocyclic carbene (NHC) ligands are ubiquitously utilized in catalysis. A common catalyst design model assumes strong M-NHC binding in this metal-ligand framework. In contrast to this common assumption, we demonstrate here that lability and controlled cleavage of the M-NHC bond (rather than its stabilization) could be more important for high-performance catalysis at low catalyst concentrations. The present study reveals a dynamic stabilization mechanism with labile metal-NHC binding and [PdX ] [NHC-R] ion pair formation. Access to reactive anionic palladium intermediates formed by dissociation of the NHC ligands and plausible stabilization of the molecular catalyst in solution by interaction with the [NHC-R] azolium ion is of particular importance for an efficient and recyclable catalyst. These ionic Pd/NHC complexes allowed for the first time the recycling of the complex in a well-defined form with isolation at each cycle. Computational investigation of the reaction mechanism confirms a facile formation of NHC-free anionic Pd in polar media through either Ph-NHC coupling or reversible H-NHC coupling. The present study formulates novel ideas for M/NHC catalyst design.

摘要

N-杂环卡宾(NHC)配体在催化中被广泛应用。一种常见的催化剂设计模型假定在这种金属-配体框架中存在强的M-NHC键合。与这一常见假设相反,我们在此证明,对于低催化剂浓度下的高性能催化,M-NHC键的不稳定性和可控裂解(而非其稳定性)可能更为重要。本研究揭示了一种具有不稳定金属-NHC键合和[PdX ][NHC-R]离子对形成的动态稳定机制。通过NHC配体解离形成的活性阴离子钯中间体以及分子催化剂在溶液中与[NHC-R]唑鎓离子相互作用实现的合理稳定化,对于高效且可循环使用的催化剂尤为重要。这些离子型Pd/NHC配合物首次使得配合物能够以明确的形式循环使用,并在每个循环中得以分离。对反应机理的计算研究证实,在极性介质中,通过Ph-NHC偶联或可逆的H-NHC偶联可轻松形成无NHC的阴离子钯。本研究为M/NHC催化剂设计提出了新的思路。

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