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首页> 外文期刊>The Journal of Chemical Physics >Charge transfer effects of ions at the liquid water/vapor interface
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Charge transfer effects of ions at the liquid water/vapor interface

机译:液态水/蒸汽界面处离子的电荷转移效应

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摘要

Charge transfer (CT), the movement of small amounts of electron density between non-bonded pairs, has been suggested as a driving force for a variety of physical processes. Herein, we examine the effect of CT on ion adsorption to the water liquid-vapor interface. Using a CT force field for molecular dynamics, we construct a potential of mean force (PMF) for Na~+, K~+, Cl~?, and I~?. The PMFs were produced with respect to an average interface and an instantaneous interface. An analysis of the PMF relative to the instantaneous surface reveals that the area in which the anions experience a free energy minimum is quite narrow, and the cations feel a steeply repulsive free energy near the interface. CT is seen to have only minor effects on the overall free energy profiles. However, the long-ranged effects of ions are highlighted by the CT model. Due to CT, the water molecules at the surface become charged, even when the ion is over 15 ? away from the surface.
机译:电荷转移(CT)是非键对之间少量电子密度的运动,已被认为是各种物理过程的驱动力。在本文中,我们研究了CT对离子吸附到水液-气界面的影响。利用CT力场进行分子动力学,我们构建了Na〜+,K〜+,Cl〜?和I〜?的平均力(PMF)。 PMF是针对平均界面和瞬时界面生成的。对相对于瞬时表面的PMF的分析表明,阴离子经历自由能最小值的区域非常狭窄,阳离子在界面附近感觉到了排斥力很大的自由能。可以看出,CT对总的自由能分布只有很小的影响。但是,CT模型突出显示了离子的远距离影响。由于CT的作用,即使离子超过15?,表面的水分子也会带电。远离表面。

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