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Hydration structure and diffusion of ions in supercooled water: Ion size effects

机译:水合物的结构和离子在过冷水中的扩散:离子尺寸效应

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We have performed a series of molecular dynamics simulations of alkali metal (Li~+, Na~+, K~+, Rb~+, and Cs~+) and halide (F~-, Cl~-, Br~-, and I~-) ions in water at infinite dilution at T = 258 K to investigate the effects of ion size on the hydration structure and diffusion of ions in supercooled water. Simulations are also performed at T = 298 K in order to compare the results of the hydration structure and diffusion in supercooled water with those in ambient water. With increase of ion size, like in ambient water, in supercooled water also the diffusion coefficients of alkali metal and halide ions are found to fall in different curves with distinct maxima. However, the realtive increases of the diffusion coefficients of larger ions comapred to those of Li~+ and F~- are found to be significantly higher in the supercooled water.
机译:我们对碱金属(Li〜+,Na〜+,K〜+,Rb〜+和Cs〜+)和卤化物(F〜-,Cl〜-,Br〜-和在T = 258 K下无限稀释的水中的I〜-)离子,以研究离子大小对过冷水中水合结构和离子扩散的影响。为了比较过冷水中的水合结构和扩散结果与周围水中的水合结构和扩散结果,还以T = 298 K进行了模拟。随着离子尺寸的增加,例如在环境水中,在过冷水中,还发现碱金属和卤化物离子的扩散系数以不同的曲线下降,且具有明显的最大值。然而,发现在过冷水中,与Li〜+和F〜-对应的较大离子的扩散系数的实际增加显着更高。

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