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首页> 外文期刊>Chemical Society Reviews >Challenges in modelling homogeneous catalysis: new answers from ab initio molecular dynamics to the controversy over the Wacker process
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Challenges in modelling homogeneous catalysis: new answers from ab initio molecular dynamics to the controversy over the Wacker process

机译:均相催化建模的挑战:从头算分子动力学到有关Wacker过程的争议的新答案

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摘要

We present here a review of the mechanistic studies of the Wacker process stressing the long controversy about the key reaction steps. We give an overview of the previous experimental and theoretical studies on the topic. Then we describe the importance of the most recent Ab Initio Molecular Dynamics (AIMD) calculations in modelling organometallic reactivity in water. As a prototypical example of homogeneous catalytic reactions, the Wacker process poses serious challenges to modelling. The adequate description of the multiple role of the water solvent is very difficult by using static quantum chemical approaches including cluster and continuum solvent models. In contrast, such reaction systems are suitable for AIMD, and by combining with rare event sampling techniques, the method provides reaction mechanisms and the corresponding free energy profiles. The review also highlights how AIMD has helped to obtain a novel understanding of the mechanism and kinetics of the Wacker process.
机译:我们在这里对瓦克过程的机理研究进行了回顾,强调了关于关键反应步骤的长期争论。我们概述了有关该主题的先前实验和理论研究。然后,我们描述了最新的从头算分子动力学(AIMD)计算在模拟水中有机金属反应性中的重要性。作为均相催化反应的典型例子,瓦克过程对建模提出了严峻挑战。通过使用包括簇和连续溶剂模型在内的静态量子化学方法,很难充分描述水溶剂的多重作用。相反,这种反应系统适用于AIMD,并且通过与稀有事件采样技术结合,该方法提供了反应机理和相应的自由能分布。审查还强调了AIMD如何帮助人们对Wacker过程的机理和动力学有了新的认识。

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