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首页> 外文期刊>The Journal of Chemical Physics >Wetting in electrolyte solutions
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Wetting in electrolyte solutions

机译:电解液润湿

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Wetting of a charged substrate by an electrolyte solution is investigated by means of classical density functional theory applied to a lattice model. Within the present model the pure, i.e., salt-free solvent, for which all interactions are of the nearest-neighbor type only, exhibits a second-order wetting transition for all strengths of the substrate-particle and the particle-particle interactions for which the wetting transition temperature is nonzero. The influences of the substrate charge density and of the ionic strength on the wetting transition temperature and on the order of the wetting transition are studied. If the substrate is neutral, the addition of salt to the solvent changes neither the order nor the transition temperature of the wetting transition of the system. If the surface charge is nonzero, upon adding salt this continuous wetting transition changes to first-order within the wide range of substrate surface charge densities and ionic strengths studied here. As the substrate surface charge density is increased, at fixed ionic strength, the wetting transition temperature decreases and the prewetting line associated with the first-order wetting transition becomes longer. This decrease of the wetting transition temperature upon increasing the surface charge density becomes more pronounced by decreasing the ionic strength.
机译:通过应用于格模型的经典密度泛函理论研究了电解质溶液对带电基材的润湿。在本模型中,纯净的,即无盐的溶剂(对于所有溶剂而言,所有相互作用仅是最近邻类型)对于所有强度的底物-颗粒和颗粒-颗粒之间的相互作用均表现出二级润湿过渡润湿转变温度不为零。研究了基质电荷密度和离子强度对润湿转变温度和润湿转变顺序的影响。如果基质是中性的,则向溶剂中添加盐既不会改变体系的润湿转变的顺序,也不会改变其转变温度。如果表面电荷不为零,则在添加盐后,此连续的润湿转变将在此处研究的宽范围的基底表面电荷密度和离子强度范围内变为一级。随着衬底表面电荷密度的增加,在固定的离子强度下,润湿转变温度降低,并且与一级润湿转变相关的预润湿线变长。当增加表面电荷密度时,润湿转变温度的这种降低通过降低离子强度变得更加明显。

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