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首页> 外文期刊>The Journal of Chemical Physics >THE INFLUENCE OF IMAGE INTERACTIONS ON THE STRUCTURE OF WATER AND ELECTROLYTES IN FRONT OF A METAL SURFACE
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THE INFLUENCE OF IMAGE INTERACTIONS ON THE STRUCTURE OF WATER AND ELECTROLYTES IN FRONT OF A METAL SURFACE

机译:图像相互作用对金属表面前部水和电解质结构的影响

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The structure of liquid water in contact with a metallic planar wall is calculated for the central force water model which is a stoichiometric mixture of partially charged hydrogen and oxygen atoms interacting via effective spherical pair potentials. The density profiles near the wall are obtained from the Wertheim-Lovett-Mou-Buff equation where the bulk information enters through the direct correlation functions, In this approach image interactions which are characteristic for a metallic boundary, and which cannot be treated as a simple particle-wall interaction are considered within a mean-field ansatz. We discuss the structural properties of the interface layer for both cases, the charged and the uncharged wall, and compare the results to those for an unpolarizable boundary where the image forces have been switched off. The differential capacitance as function of the wall charge is seen to show a characteristic ''hump'' which can be related to the transition between two possible icelike water structures in front of the wall. (C) 1997 American Institute of Physics. [References: 24]
机译:对于中心力水模型,计算了与金属平面壁接触的液态水的结构,该模型是部分荷电的氢和氧原子通过有效球对电位相互作用的化学计量混合物。壁附近的密度分布是从Wertheim-Lovett-Mou-Buff方程获得的,其中大量信息通过直接相关函数输入。在这种方法中,图像相互作用是金属边界的特征,不能被视为简单的粒子-壁相互作用被认为是在平均场ansatz内。我们讨论了带电壁和不带电壁两种情况下界面层的结构特性,并将结果与​​关闭了图像力的不可极化边界的结果进行了比较。可以看出,作为墙电荷的函数的差分电容显示出一个特征性的“驼峰”,该峰可能与墙前两个可能的冰状水结构之间的过渡有关。 (C)1997美国物理研究所。 [参考:24]

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