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Dynamics of the Bulk Hydrated Electron from Many-Body Wave-Function Theory

机译:来自多体波函数理论的散装水合电子的动态

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摘要

The structure of the hydrated electron is a matter of debate as it evades direct experimental observation owing to the short life time and low concentrations of the species Herein, the first molecular dynamics simulation of the bulk hydrated electron based on correlated wave-function theory provides conclusive evidence in favor of a persistent tetrahedral cavity made up by four water molecules, and against the existence of stable non-cavity structures. Such a cavity is formed within less than a picosecond after the addition of an excess electron to neat liquid water, with less regular cavities appearing as intermediates. The cavities are bound together by weak H-H bonds, the number of which correlates well with the number of coordinated water molecules, each type of cavity leaving a distinct spectroscopic signature. Simulations predict regions of negative spin density and a gyration radius that are both in agreement with experimental data.
机译:水合电子的结构是辩论的问题,因为它避免了本文的使用寿命短的寿命和低浓度的直接实验观察,基于相关波函数理论的散装水合电子的第一分子动力学模拟提供了决定性 有利于有四种水分子组成的持续四面体腔的证据,以及稳定的非腔结构的存在。 在加入过量的电子以纯净的液体水之后,在小于皮秒内形成这种腔,具有较少的常规腔作为中间体。 空腔通过弱H-H键合并在一起,其数量与协调水分子的数量相互作用,每种类型的腔留下留下不同的光谱签名。 仿真预测负旋转密度的区域和与实验数据一致的循环半径。

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