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A first-principles theoretical study of hydrogen-bond dynamics and vibrational spectral diffusion in aqueous ionic solution: Water in the hydration shell of a fluoride ion

机译:离子水溶液中氢键动力学和振动光谱扩散的第一性原理研究:氟离子水合壳中的水

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We present a first-principles simulation study of vibrational spectral diffusion and hydrogen-bond dynamics in solution of a fluoride ion in deuterated water. The present calculations are based on abinitio molecular dynamics simulation for trajectory generation and wavelet analysis for calculations of frequency fluctuations. The O-D bonds of deuterated water in the anion hydration shell are found to have lower stretching frequency than the bulk water. The dynamical calculations of vibrational spectral diffusion for hydration shell water molecules reveal three time scales: a short-time relaxation (~100 fs) corresponding to the dynamics of intact ion-water hydrogen bonds, a slower relaxation (~7.5 ps) corresponding to the lifetimes of fluoride ion-water hydrogen bonds, and an even longer time scale (~26 ps) associated with the escape dynamics of water from the anion hydration shell. However, the slowest time scale is not observed when the vibrational spectral diffusion is calculated over O-D bonds of all water molecules, including those in the bulk.
机译:我们提出了第一原理的模拟实验,研究了氘水中氟离子溶液的振动光谱扩散和氢键动力学。目前的计算是基于用于轨迹生成的二元分子动力学模拟和用于频率波动计算的小波分析。发现阴离子水合壳中氘化水的O-D键具有比本体水低的拉伸频率。水合壳水分子振动光谱扩散的动力学计算揭示了三个时间尺度:对应于完整离子水氢键动力学的短时弛豫(〜100 fs),对应于完整离子水氢键动力学的较慢弛豫(〜7.5 ps)。氟离子-水氢键的寿命,甚至更长的时间尺度(约26 ps)与阴离子水化壳中水的逸出动力学有关。但是,当在所有水分子(包括大分子中的水分子)的O-D键上计算振动光谱扩散时,没有观察到最慢的时间尺度。

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