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Direct simulation of electron transfer in the cobalt hexammine(II/III) self-exchange reaction

机译:钴己二胺(II / III)自交换反应中电子转移的直接模拟

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摘要

We present an atomistic simulation of the cobalt hexammine(II/III) self-exchange reaction using path integral (PI) methods. We construct a simple force field for the system in its reactant state that includes parameters for both atom-atom interactions, and interactions with an explicit transferring electron represented in the PI framework. We then calculate the outer sphere free energy barrier due to solvent reorganization from a PI molecular dynamics simulation and we obtain the dynamic transmission coefficient using ring polymer molecular dynamics. Combining these calculated values with literature values for the inner sphere reorganization energy, we obtain a reaction rate in good agreement with experimental measurements. The protocol introduced here circumvents the need for complex, system-specific force field parameterization along an assumed reaction coordinate making it sufficiently accurate, efficient, and broadly applicable to the study of both adiabatic and nonadiabatic charge transfer reactions in transition metal complexes.
机译:我们提出了使用路径积分(PI)方法对钴己胺(II / III)自交换反应进行原子模拟。我们在其反应物状态下为系统构造一个简单的力场,该力场包括用于原子-原子相互作用以及与PI框架中表示的显式转移电子相互作用的参数。然后,我们根据PI分子动力学模拟计算出由于溶剂重组而产生的外层自由能垒,并使用环聚合物分子动力学获得了动态传递系数。将这些计算值与内球重组能量的文献值相结合,我们得出的反应速率与实验测量值非常吻合。此处引入的协议避免了沿假设的反应坐标对系统特定的力场参数进行复杂化的需要,使其足够准确,高效,并且广泛适用于过渡金属配合物中绝热和非绝热电荷转移反应的研究。

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