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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Mesoscopic Ordering of Polyelectrolyte Chains in Foam Films: Role of Electrostatic Forces
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Mesoscopic Ordering of Polyelectrolyte Chains in Foam Films: Role of Electrostatic Forces

机译:泡沫薄膜中聚电解质链的介观排列:静电力的作用

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Recent studies using a thin film balance of free-standing thin aqueous films (foam films) containing polyelectrolytes resulted in jump-like discontinuities in the film thickness with increasing outer pressure. These jumps in film thickness correspond to an oscillation of the disjoining pressure. The oscillation period of the disjoining pressure scales as c~(-0.5) with the polyelectrolyte concentration c. A mesoscopic ordering of the chains in the film similar to that found in aqueous semidilute polyelectrolyte solutions is assumed. In experiments presented in this work, the electrostatic effect is investigated by adding low molecular salt and varying the degree of charge of the polyelectrolyte chains. The studies reveal that the amplitudes of the disjoining pressure oscillations are reduced with increasing ionic strength and decreasing degree of charge. The results show that the jumps in film thickness and therefore the structuring are due to the electrostatic repulsions between the polyelectrolyte chains.
机译:最近的研究使用含有聚电解质的自立式水溶薄膜(泡沫薄膜)的薄膜平衡,随着外部压力的增加,薄膜厚度出现跳跃状的不连续性。膜厚的这些跳跃对应于分离压力的波动。分离压力的振荡周期随聚电解质浓度c缩放为c〜(-0.5)。假定薄膜中链的介观排列类似于在半稀释聚电解质水溶液中发现的排列。在这项工作中提出的实验中,通过添加低分子盐并改变聚电解质链的电荷度来研究静电效应。研究表明,随着离子强度的增加和电荷度的降低,相分离的压力振荡的幅度减小。结果表明,膜厚度的跳跃以及因此结构化是由于聚电解质链之间的静电排斥。

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