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Thermodynamic stability of finely dispersed Na+Cl-(H2O) (n) aerosol particles in water vapor

机译:细分散的Na + Cl-(H2O)(n)气溶胶颗粒在水蒸气中的热力学稳定性

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摘要

Four qualitatively different thermodynamic states have been identified for hydrated sodium chloride ion pairs in water vapor. Two of the states are stable, and the other two are unstable. The stable states of a contact ion pair (CIP) and a solvent-separated ion pair (SSIP) represent sites of heterogeneous nucleation in supersaturated vapors. The unstable states form free energy barriers that separate the stable states. As the temperature is elevated, the SSIP states become more stable than the CIP states already in unsaturated water vapors. Hydrated ion pairs that contain hydroxonium ions instead of alkali metal cations are absolutely stable in the SSIP state already in the range of unsaturated vapors and low temperatures. Computer-assisted calculations of the free energy and work of hydration have been carried out by the Monte Carlo bicanonical statistical ensemble method in terms of a detailed model of interactions comprising polarization, many-particle covalent interactions, and charge transfer phenomena.
机译:对于水蒸气中的水合氯化钠离子对,已经确定了四个质量上不同的热力学状态。其中两个状态是稳定的,另外两个状态是不稳定的。接触离子对(CIP)和溶剂分离的离子对(SSIP)的稳态代表了过饱和蒸气中的异相成核位点。不稳定状态形成了将稳定状态分开的自由能垒。随着温度升高,SSIP状态比不饱和水蒸气中已经存在的CIP状态更加稳定。在不饱和蒸气和低温范围内,含有氢氧离子而不是碱金属阳离子的水合离子对在SSIP状态下绝对稳定。蒙特卡洛双经典统计集成方法已通过计算机辅助计算了自由能和水合功,根据相互作用的详细模型,包括极化,多粒子共价相互作用和电荷转移现象。

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