化学
离域电子
溶剂化
电子
分子动力学
从头算
星团(航天器)
电子相关
分子物理学
离子
溶剂化电子
原子物理学
从头算量子化学方法
化学物理
计算化学
分子
物理
物理化学
量子力学
水溶液
计算机科学
程序设计语言
有机化学
放射分析
作者
Tomaso Frigato,Joost VandeVondele,Burkhard Schmidt,Christof Schütte,Pavel Jungwirth
摘要
We present a computational study of the structure and dynamics of an excess electron in a medium-sized water cluster aimed at addressing the question of interior vs exterior solvation. Ab initio Born-Oppenheimer molecular dynamics simulations were performed within the DFT framework, employing a hybrid Gaussian and plane-wave formalism together with the PBE exchange-correlation functional and norm-conserving pseudopotentials. Analysis of a 15-ps trajectory allowed us to reach the following conclusions: (i) the excess electron is predominantly located at the cluster surface (even if it is initially placed in the interior), (ii) the computed electron binding energies correlate with the electron localization rather than with its bulk vs surface location, and (iii) a dynamical interconversion between two different H-bond patterns around the electron occurs. The computed electron binding energies and the most relevant features of the IR spectrum are in a very good agreement with results of previous experimental studies.
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