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首页> 外文期刊>Angewandte Chemie >Surface Charges at the CaF2/Water Interface Allow Very Fast Intermolecular Vibrational-Energy Transfer
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Surface Charges at the CaF2/Water Interface Allow Very Fast Intermolecular Vibrational-Energy Transfer

机译:CAF2 /水界面处的表面电荷允许非常快速的分子间振动 - 能量转移

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摘要

We investigate the dynamics of water in contact with solid calcium fluoride, where at low pH, localized charges can develop upon fluorite dissolution. We use 2D surface-specific vibrational spectroscopy to quantify the heterogeneity of the interfacial water (D2O) molecules and provide information about the sub-picosecond vibrational-energy-relaxation dynamics at the buried solid/liquid interface. We find that strongly H-bonded OD groups, with a vibrational frequency below 2500 cm(-1), display very rapid spectral diffusion and vibrational relaxation; for weakly H-bonded OD groups, above 2500 cm(-1), the dynamics slows down substantially. Atomistic simulations based on electronic-structure theory reveal the molecular origin of energy transport through the local H-bond network. We conclude that strongly oriented H-bonded water molecules in the adsorbed layer, whose orientation is pinned by the localized charge defects, can exchange vibrational energy very rapidly due to the strong collective dipole, compensating for a partially missing solvation shell.
机译:我们研究了与固体氟化钙接触的水的动态,在低pH下,萤石溶解时可以发育局部电荷。我们使用2D表面特异性振动光谱来量化界面水(D2O)分子的异质性,并在掩埋的固体/液体界面处提供关于亚微微秒振动 - 能量松弛动力学的信息。我们发现强烈的H键合的OD组,振动频率低于2500厘米(-1),显示出非常快速的光谱扩散和振动松弛;对于弱H键合的外部组,高于2500厘米(-1),动力学大幅减慢。基于电子结构理论的原子模拟揭示了通过本地H键网络的能量传输的分子来源。我们得出结论,由于局部电荷缺陷,其取向固定的吸附层中的强烈的H键合水分子可以非常快速地交换振动能量,这些偶极物可换成部分缺失的溶剂化壳。

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