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首页> 外文期刊>The Journal of Chemical Physics >Density functional study of surface forces in athermal polymer solutions with additive hard sphere interactions: Solvent effects, capillary condensation, and capillary-induced surface transitions
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Density functional study of surface forces in athermal polymer solutions with additive hard sphere interactions: Solvent effects, capillary condensation, and capillary-induced surface transitions

机译:具有加成的硬球相互作用的非热聚合物溶液中表面力的密度泛函研究:溶剂效应,毛细管冷凝和毛细管诱导的表面转变

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摘要

A density functional theory for polymer solutions is genralized to cases where the monomers have a different diameter to the solvent. An appropriate free energy functional is obtained by integration of the generalized Flory equation of state for such systems. This functional rpedicts that entropic demixing may occur in polymer solutions in which the solvent particles are smaller than the monomers. Demixing is promoted not only by a large size disparity, but also by a high pressure as well as by polymer length. The existence of two separate phases in the bulk solution suggests the possibility of capillary-induced phase transitions, even when the confining surfaces are hard but otherwise inert. We examine such phase transitions and their relation to surfaces are hard, but otherwise inert. We examine such phase transitions and their relation to surface forces and colloidal stability. The density functional theory also predicts that under certain conditions, layering transitions will occur at hard and flat surfaces. A transition from a thin to a thick polymer-rich surface layer may take place as the separation between two surfaces is decreased, and we study the concomitant change on the surface force. Stable thick phases are predicted even at very large undersaturations, and they give rise to a profound increase of the range and strength of the surface force. We furthermore include comparisons with predictions from a model in which the solvent only enters the description implicitly. Responses of the surface forces to changes in monomer diameter, solvent diameter, polymer density, and chain length are investigated.
机译:聚合物溶液的密度泛函理论适用于单体与溶剂直径不同的情况。通过积分此类系统的广义弗洛里状态方程,可以获得适当的自由能泛函。该功能说明在溶剂颗粒小于单体的聚合物溶液中可能发生熵分解。不仅由于较大的尺寸差异,而且由于高压以及聚合物长度,都促进了混合。本体溶液中存在两个独立的相,这提示了毛细管诱导的相变的可能性,即使约束表面较硬但呈惰性也是如此。我们检查了这样的相变及其与表面的关系,虽然很难,但还是惰性的。我们研究了这种相变及其与表面力和胶体稳定性的关系。密度泛函理论还预测,在某些条件下,硬和平坦表面会发生分层过渡。随着两个表面之间的间距减小,可能会发生从薄到厚的富含聚合物的表面层的过渡,我们研究了表面力的伴随变化。即使在非常大的不饱和度下,也可以预测到稳定的厚相,并且它们会引起表面力的范围和强度的大幅增加。此外,我们还包含与模型预测的比较,其中溶剂仅隐式地输入描述。研究了表面力对单体直径,溶剂直径,聚合物密度和链长变化的响应。

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