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微观溶剂化和包合效应对超分子催化的影响:[GaL]金属笼内的 C-C 还原消除反应。

Microsolvation and Encapsulation Effects on Supramolecular Catalysis: C-C Reductive Elimination inside [GaL] Metallocage.

机构信息

Departament de Química and Centro de Innovación en Química Avanzada (ORFEO-CINQA) , Universitat Autònoma de Barcelona , Cerdanyola del Valles , 08193 Barcelona , Catalonia , Spain.

出版信息

J Am Chem Soc. 2019 Aug 21;141(33):13114-13123. doi: 10.1021/jacs.9b04909. Epub 2019 Aug 7.

Abstract

The host effect of the supramolecular [GaL] tetrahedral metallocage on reductive elimination of substrate by encapsulated Au(III) complexes is investigated by means of computational methods. The behavior of the reactants in solution and within the metallocage is initially evaluated by means of classical molecular dynamics simulations. These results guided the selection of proper computational models to describe the reaction in solution and inside the metallocage at the DFT level. The calculated Gibbs energy barriers are in very good agreement with experiment both in solution and inside the metallocage. The analysis in solution revealed that microsolvation around the Au(III) complex increases the Gibbs energy barrier. The analysis within the metallocage shows that its encapsulation favors the reaction. The process can be formally described as removing explicit microsolvation around the gold complex and encapsulating the metal complex inside the metallocage. Both processes are important for the reaction, but the removal of the solvent molecules surrounding the Au(III) metal complex is fundamental for the reduction of the reaction barrier. The energy decomposition analysis of the barrier among strain, interaction, and thermal terms shows that strain term is very low whereas the contribution of thermal (entropic) effects is moderate. Interestingly, the key term responsible for reducing the Gibbs energy barrier is the interaction. This term can be mainly associated with electrostatic interactions in agreement with previous examples in the literature.

摘要

通过计算方法研究了超分子[GaL]四面体金属笼对包裹的 Au(III)配合物还原消除底物的主体效应。通过经典分子动力学模拟初步评估了反应物在溶液中和金属笼内的行为。这些结果指导了选择适当的计算模型来描述在溶液中和金属笼内的反应,在 DFT 水平上。计算得到的吉布斯能垒与溶液中和金属笼内的实验结果非常吻合。在溶液中的分析表明,Au(III)配合物周围的微溶剂化增加了吉布斯能垒。在金属笼内的分析表明,其包封有利于反应。该过程可以形式上描述为去除金配合物周围的显式微溶剂化并将金属配合物封装在金属笼内。这两个过程对于反应都很重要,但去除围绕 Au(III)金属配合物的溶剂分子对于降低反应势垒至关重要。应变、相互作用和热项之间的势垒的能量分解分析表明,应变项非常低,而热(熵)效应的贡献适中。有趣的是,降低吉布斯能垒的关键项是相互作用。该术语主要可以与文献中的先前示例一致,与静电相互作用相关联。

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