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首页> 外文期刊>The Journal of Chemical Physics >Insights into the ultraviolet spectrum of liquid water from model calculations
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Insights into the ultraviolet spectrum of liquid water from model calculations

机译:通过模型计算了解液态水的紫外线光谱

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With a view toward a better molecular level understanding of the effects of hydrogen bonding on the ultraviolet absorption spectrum of liquid water, benchmark electronic structure calculations using high level wave function based methods and systematically enlarged basis sets are reported for excitation energies and oscillator strengths of valence excited states in the equilibrium water monomer and dimer and in a selection of liquid-like dimer structures. Analysis of the electron density redistribution associated with the two lowest valence excitations of the water dimer shows that these are usually localized on one or the other monomer, although valence hole delocalization can occur for certain relative orientations of the water molecules. The lowest excited state is mostly associated with the hydrogen bond donor and the significantly higher energy second excited state mostly with the acceptor. The magnitude of the lowest excitation energies is strongly dependent on where the valence hole is created, and only to a lesser degree on the perturbation of the excited electron density distribution by the neighboring water molecule. These results suggest that the lowest excitation energies in clusters and liquid water can be associated with broken acceptor hydrogen bonds, which provide energetically favorable locations for the formation of a valence hole. Higher valence excited states of the dimer typically involve delocalization of the valence hole and/or delocalization of the excited electron and/or charge transfer. Two of the higher valence excited states that involve delocalized valence holes always have particularly large oscillator strengths. Due to the pervasive delocalization and charge transfer, it is suggested that most condensed phase water valence excitations intimately involve more than one water molecule and, as a consequence, will not be adequately described by models based on perturbation of free water monomer states. The benchmark calculations are further used to evaluate a series of representative semilocal, global hybrid, and range separated hybrid functionals used in efficient time-dependent density functional methods. It is shown that such an evaluation is only meaningful when comparison is made at or near the complete basis set limit of the wave function based reference method. A functional is found that quantitatively describes the two lowest excitations of water dimer and also provides a semiquantitative description of the higher energy valence excited states. This functional is recommended for use in further studies on the absorption spectrum of large water clusters and of condensed phase water.
机译:为了更好地从分子水平上了解氢键对液态水紫外线吸收光谱的影响,报告了使用基于高能级波函数的方法和系统放大的基集的基准电子结构计算的激发能和价态振子强度在平衡水单体和二聚体中以及在选择的液体状二聚体结构中处于激发态。对与水二聚体的两个最低价激发相关的电子密度再分布的分析表明,尽管对于水分子的某些相对取向,价空穴会发生离域,但它们通常位于一个或另一个单体上。最低激发态主要与氢键供体有关,而明显更高的能量第二激发态则主要与受体有关。最低激发能的大小在很大程度上取决于化合价空穴的形成位置,而在较小程度上取决于相邻水分子对激发电子密度分布的扰动。这些结果表明,团簇和液态水中最低的激发能可能与断裂的受体氢键有关,后者为形成价孔提供了能量上有利的位置。二聚物的更高价态的激发态通常涉及价空穴的离域化和/或激发电子的离域化和/或电荷转移。涉及离化价空穴的两个较高价激发态总是具有特别大的振荡器强度。由于普遍的离域和电荷转移,建议大多数凝结相的水价激发紧密地涉及一个以上的水分子,因此,基于自由水单体态扰动的模型将无法充分描述该激发态。基准计算还用于评估在有效的随时间变化的密度泛函方法中使用的一系列代表性半局部,全局混合和范围分隔的混合泛函。结果表明,只有在基于波动函数的参考方法的完整基准集极限值或接近基准值进行比较时,这种评估才有意义。发现一种功能,该功能定量地描述了水二聚体的两个最低激发,并且还提供了高能价激发态的半定量描述。建议将此功能用于进一步研究大型水团和冷凝相水的吸收光谱。

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