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第一原理分子动力学研究水-氨混合团簇中过量电子和锂离子的溶剂化:有限温度下[(H2O)5NH3]-和 Li(H2O)5NH3 的结构、光谱和动力学行为。

A first principles molecular dynamics study of excess electron and lithium atom solvation in water-ammonia mixed clusters: structural, spectral, and dynamical behaviors of [(H2O)5NH3]- and Li(H2O)5NH3 at finite temperature.

机构信息

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

出版信息

J Chem Phys. 2011 Jan 21;134(3):034302. doi: 10.1063/1.3511701.

Abstract

First principles molecular dynamics simulations are carried out to investigate the solvation of an excess electron and a lithium atom in mixed water-ammonia cluster (H(2)O)(5)NH(3) at a finite temperature of 150 K. Both (H(2)O)(5)NH(3) and Li(H(2)O)(5)NH(3) clusters are seen to display substantial hydrogen bond dynamics due to thermal motion leading to many different isomeric structures. Also, the structures of these two clusters are found to be very different from each other and also very different from the corresponding neutral cluster without any excess electron or the metal atom. Spontaneous ionization of Li atom occurs in the case of Li(H(2)O)(5)NH(3). The spatial distribution of the singly occupied molecular orbital shows where and how the excess (or free) electron is primarily localized in these clusters. The populations of single acceptor (A), double acceptor (AA), and free (NIL) type water and ammonia molecules are found to be significantly high. The dangling hydrogens of these type of water or ammonia molecules are found to primarily capture the free electron. It is also found that the free electron binding motifs evolve with time due to thermal fluctuations and the vertical detachment energy of (H(2)O)(5)NH(3) and vertical ionization energy of Li(H(2)O)(5)NH(3) also change with time along the simulation trajectories. Assignments of the observed peaks in the vibrational power spectra are done and we found a one to one correlation between the time-averaged populations of water and ammonia molecules at different H-bonding sites with the various peaks of power spectra. The frequency-time correlation functions of OH stretch vibrational frequencies of these clusters are also calculated and their decay profiles are analyzed in terms of the dynamics of hydrogen bonded and dangling OH modes. It is found that the hydrogen bond lifetimes in these clusters are almost five to six times longer than that of pure liquid water at room temperature.

摘要

采用第一性原理分子动力学模拟方法,在 150 K 的有限温度下,研究了过量电子和锂离子在混合水-氨团簇(H2O)5NH3 中的溶剂化作用。由于热运动导致的氢键动力学,[(H2O)5NH3]-和 Li(H2O)5NH3 团簇都显示出大量的氢键动力学,从而产生了许多不同的异构结构。此外,这两个团簇的结构彼此之间以及与没有过量电子或金属原子的相应中性团簇之间有很大的不同。在 Li(H2O)5NH3 的情况下,Li 原子会自发电离。单占据分子轨道的空间分布表明,过量(或自由)电子主要在这些团簇中何处以及如何定位。单受体(A)、双受体(AA)和自由(NIL)型水分子和氨分子的占有率明显较高。这些类型的水分子或氨分子的悬空氢原子被发现主要捕获自由电子。还发现,由于热波动,自由电子结合基序随时间而演变,[(H2O)5NH3]-的垂直离解能和 Li(H2O)5NH3 的垂直电离能也随时间沿模拟轨迹而变化。对观察到的振动能谱中的峰进行了分配,我们发现不同氢键位置上水和氨分子的时间平均占有率与能谱中的各种峰之间存在一一对应关系。还计算了这些团簇的 OH 伸缩振动频率的频时相关函数,并根据氢键和悬空 OH 模式的动力学对其衰减轮廓进行了分析。结果表明,这些团簇中的氢键寿命比室温下纯液态水的氢键寿命长五到六倍。

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