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流体界面处具有起伏接触线的粒子间相互作用:任意阶的毛细多极子

Interactions between particles with an undulated contact line at a fluid interface: capillary multipoles of arbitrary order.

作者信息

Danov Krassimir D, Kralchevsky Peter A, Naydenov Boris N, Brenn Günter

机构信息

Laboratory of Chemical Physics and Engineering, Faculty of Chemistry, University of Sofia, 1164 Sofia, Bulgaria.

出版信息

J Colloid Interface Sci. 2005 Jul 1;287(1):121-34. doi: 10.1016/j.jcis.2005.01.079.

Abstract

A colloidal particle adsorbed at a fluid interface could have an undulated, or irregular contact line in the presence of surface roughness and/or chemical inhomogeneity. The contact-line undulations produce distortions in the surrounding liquid interface, whose overlap engenders capillary interaction between the particles. The convex and concave local deviations of the meniscus shape from planarity can be formally treated as positive and negative "capillary charges," which form "capillary multipoles." Here, we derive theoretical expressions for the interaction between two capillary multipoles of arbitrary order. Depending on the angle of mutual orientation, the interaction energy could exhibit a minimum, or it could represent a monotonic attraction. For undulation amplitudes larger than 5 nm, the interaction energy is typically much greater than the thermal energy kT. As a consequence, a monolayer from capillary multipoles exhibits considerable shear elasticity, and such monolayer is expected to behave as a two-dimensional elastic solid. These theoretical results could be helpful for the understanding of phenomena related to aggregation and ordering of particles adsorbed at a fluid interface, and for the interpretation of rheological properties of particulate monolayers. Related research fields are the particle-stabilized (Pickering) emulsions and the two-dimensional self-assembly of microscopic particles.

摘要

吸附在流体界面的胶体粒子,在存在表面粗糙度和/或化学不均匀性的情况下,可能会有起伏不平或不规则的接触线。接触线的起伏会在周围的液体界面产生畸变,这些畸变的重叠会导致粒子之间产生毛细相互作用。弯月面形状相对于平面的凸凹局部偏差可以形式上视为正、负“毛细电荷”,它们形成“毛细多极子”。在此,我们推导了任意阶两个毛细多极子之间相互作用的理论表达式。根据相互取向的角度,相互作用能可能会出现最小值,也可能表现为单调吸引。对于起伏幅度大于5纳米的情况,相互作用能通常远大于热能kT。因此,由毛细多极子构成的单层表现出相当大的剪切弹性,并且预计这样的单层会表现为二维弹性固体。这些理论结果有助于理解与吸附在流体界面的粒子的聚集和有序化相关的现象,以及解释颗粒单层的流变性质。相关的研究领域包括粒子稳定(皮克林)乳液和微观粒子的二维自组装。

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