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首页> 外文期刊>Physical review letters >Realistic Quantitative Descriptions of Electron Transfer Reactions: Diabatic Free-Energy Surfaces from First-Principles Molecular Dynamics
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Realistic Quantitative Descriptions of Electron Transfer Reactions: Diabatic Free-Energy Surfaces from First-Principles Molecular Dynamics

机译:电子转移反应的现实定量描述:第一性原理分子动力学的绝热自由能表面

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摘要

A general approach to calculate the diabatic surfaces for electron-transfer reactions is presented, based on first-principles molecular dynamics of the active centers and their surrounding medium. The excitation energy corresponding to the transfer of an electron at any given ionic configuration (the Marcus energy gap) is accurately assessed within ground-state density-functional theory via a novel penalty functional for oxidation-reduction reactions that appropriately acts on the electronic degrees of freedom alone. The self-interaction error intrinsic to common exchange-correlation functionals is also corrected by the same penalty functional. The diabatic free-energy surfaces are then constructed from umbrella sampling on large ensembles of configurations. As a paradigmatic case study, the self-exchange reaction between ferrous and ferric ions in water is studied in detail.
机译:基于活性中心及其周围介质的第一原理分子动力学,提出了一种计算电子传递反应的非绝热表面的通用方法。在基态密度泛函理论中,通过新颖的氧化还原反应罚函数准确地评估与电子在任意给定离子构型(马库斯能隙)上的转移相对应的激发能,该罚函数可适当地作用于电子的独自自由。通用交换相关函数固有的自交互误差也可以通过相同的罚函数进行校正。然后,通过伞状采样在大的整体结构上构造非绝热自由能表面。作为一个典型案例研究,详细研究了水中亚铁离子与铁离子之间的自交换反应。

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