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Entropic solvation force between surfaces modified by grafted chains: a density functional approach

机译:接枝链修饰的表面之间的熵溶剂化力:密度泛函方法

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摘要

The behavior of a hard sphere fluid in slit-like pores with walls modified by grafted chain molecules composed of hard sphere segments is studied using density functional theory. The chains are grafted to opposite walls via terminating segments forming pillars. The effects of confinement and of "chemical" modification of pore walls on the entropic solvation force are investigated in detail. We observe that in the absence of adsorbed fluid the solvation force is strongly repulsive for narrow pores and attractive for wide pores. In the presence of adsorbed fluid both parts of the curve of the solvation force may develop oscillatory behavior dependent on the density of pillars, the number of segments and adsorption conditions. Also, the size ratio between adsorbed fluid species and chain segments is of importance for the development of oscillations. The choice of these parameters is crucial for efficient manipulation of the solvation force as desired for pores of different width.
机译:利用密度泛函理论研究了硬球体流体在缝隙状孔隙中的行为,该孔隙具有被硬球体片段组成的接枝链分子修饰的壁。链条通过形成支柱的端接片段嫁接到相对的壁上。详细研究了孔壁的封闭和“化学”修饰对熵溶剂化力的影响。我们观察到,在没有吸附流体的情况下,溶剂化力对窄孔具有强烈的排斥力,而对宽孔则具有吸引力。在存在吸附流体的情况下,溶剂化力曲线的两个部分都可能出现振荡行为,这取决于柱的密度,链段的数量和吸附条件。而且,吸附的流体种类和链段之间的尺寸比对于产生振荡也很重要。这些参数的选择对于有效控制不同宽度的孔隙所需的溶剂化力至关重要。

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  • 作者

    Pizio S.; Sokołowski O.;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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