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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Degree of Initial Hole Localization/Delocalization in Ionized Water Clusters
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Degree of Initial Hole Localization/Delocalization in Ionized Water Clusters

机译:电离水团簇中初始空穴的局域化/去局域化程度

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摘要

The electronic structure of ionized bulk liquid water presents a number of theoretical challenges. Not the least of these is the realization that the detailed geometry of the hydrogen bonding network is expected to have a strong effect on the electronic couplings between water molecules and thus the degree of delocalization of the initially ionized system. This problem is approached from a cluster perspective where a high-level coupled cluster description of the electronic structure is still possible. Building on the work and methodology developed for the water dimer cation [J. Phys. Chem. A 2008, 112, 6159], the character and spectrum of electronic states of the water hole and their evolution from the dimer into higher clusters is presented. As the time evolution of the initially formed hole can in principle be followed by the system's transient absorption spectrum, the state spacings and transition strengths are computed. An analysis involving Dyson orbitals is applied and shows a partially delocalized nature of states. The issue of conformation disorder in the hydrogen bonding geometry is addressed for the water dimer cation.
机译:电离的散装液态水的电子结构提出了许多理论挑战。其中最重要的一点是,人们认识到氢键网络的详细几何形状有望对水分子之间的电子耦合产生强烈影响,从而对最初电离的系统的离域化程度产生重大影响。从集群的角度解决了这个问题,在该观点下,仍然可以对电子结构进行高级耦合的集群描述。建立在为水二聚阳离子开发的工作和方法上[J.物理化学[2008,112,6159]展示了水坑电子态的特征和光谱,以及它们从二聚体到更高簇的演化。由于原则上可以在最初形成的孔的时间演变之后跟随系统的瞬态吸收光谱,因此可以计算出状态间距和跃迁强度。应用涉及戴森轨道的分析,并显示了状态的部分离域性质。对于水二聚体阳离子,解决了氢键几何结构中构象无序的问题。

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