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Exploring the Mechanisms of Reactions in Solution from Transition Path Sampling Molecular Dynamics Simulations

机译:从过渡路径采样分子动力学模拟探索溶液中的反应机理

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Recent advances in molecular dynamics simulations of rare reaction events and aggregation processes are reviewed.Therein the central focus is dedicated to employing the transition path sampling method to study reactions in solution.We describe systematic approaches for generating initial transition pathways and efficient strategies for computationally feasible exploration of further transition routes.The unprejudiced study of reaction mechanisms is illustrated for reactions in aqueous solution and other complex systems.Transition path sampling allows very detailed investigation of solvent effects.Apart from stabilization of reactant,transition,or product state ensembles,this also includes the role of the solvent as a heat bath and as a putative reaction partner.The latter issue is of particular importance for reactions in aqueous solutions,which involve proton-transfer steps that may be assisted by water molecules via the Grotthuss mechanism.
机译:回顾了稀有反应事件和聚集过程的分子动力学模拟的最新进展,其中的重点是采用过渡路径采样方法研究溶液中的反应。我们描述了生成初始过渡路径的系统方法和计算可行的有效策略探索进一步的过渡路线。说明了对水溶液和其他复杂系统中反应的反应机理的无偏见的研究。过渡路线采样可以非常详细地研究溶剂的作用。除了反应物,过渡或产品状态的稳定化之外,这也包括溶剂作为热浴和推定的反应伙伴的作用。后一问题对于水溶液中的反应尤为重要,其中涉及质子转移步骤,水分子可通过格罗特斯斯机制协助转移质子。

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