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在有限温度下的水分子簇中过剩电子和锂离子的溶剂化:(H2O)6-和 Li(H2O)6 的结构、光谱和动力学行为的从头算分子动力学研究。

Excess electron and lithium atom solvation in water clusters at finite temperature: an ab initio molecular dynamics study of the structural, spectral, and dynamical behavior of (H2O)6- and Li(H2O)6.

机构信息

Department of Chemistry, Indian Institute of Technology, Kanpur, India 208016.

出版信息

J Phys Chem A. 2010 Nov 11;114(44):11869-78. doi: 10.1021/jp103139c.

DOI:10.1021/jp103139c
PMID:20958010
Abstract

The roles of hydrogen bonds in the solvation of an excess electron and a lithium atom in water hexamer cluster at 150 K have been studied by means of ab initio molecular dynamics simulations. It is found that the hydrogen bonded structures of (H(2)O)(6)(-) and Li(H(2)O)(6) clusters are very different from each other and they dynamically evolve from one conformer to other along their simulation trajectories. The populations of the single acceptor, double acceptor, and free type water molecules are found to be significantly high unlike that in pure water clusters. Free hydrogens of these type of water molecules primarily capture the unbound electron density in these clusters. It is found that the binding motifs of the free electron evolve with time and the vertical detachment energy of (H(2)O)(6)(-) and vertical ionization energy of Li(H(2)O)(6) also change with time. Assignments of the observed peaks in vibrational power spectra are done, and we found direct correlations between the time-averaged population of water molecules in different hydrogen bonding states and the spectral features. The dynamical aspects of these clusters have also been studied through calculations of time correlations of instantaneous stretch frequencies of OH modes which are obtained from the simulation trajectories through a time series analysis.

摘要

通过从头算分子动力学模拟研究了在 150 K 时水六聚体簇中过量电子和锂离子溶剂化作用中氢键的作用。结果发现,(H2O)6-和 Li(H2O)6 团簇的氢键结构彼此非常不同,它们沿着模拟轨迹从一种构象动态演化到另一种构象。与纯水团簇相比,发现单受体、双受体和游离型水分子的比例显著较高。这些类型的水分子的游离氢主要捕获这些团簇中未结合的电子密度。结果发现,自由电子的结合模式随时间演变,(H2O)6-的垂直离解能和 Li(H2O)6 的垂直电离能也随时间变化。对振动功率谱中观察到的峰进行了分配,我们发现不同氢键状态下水分子的时间平均比例与光谱特征之间存在直接相关性。还通过对从模拟轨迹通过时间序列分析获得的 OH 模式瞬时伸缩频率的瞬时相关的计算研究了这些团簇的动力学方面。

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