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透镜状颗粒间界面相互作用的解释

Interpretation of interfacial interactions between lenticular particles.

作者信息

Choi Kyu Hwan, Lee Daeyeon, Park Bum Jun

机构信息

Department of Chemical Engineering, Kyung Hee University, Yongin, Gyeonggi-do 17104, South Korea.

Department of Chemical and Biolomolecular Engineering, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

J Colloid Interface Sci. 2020 Nov 15;580:592-600. doi: 10.1016/j.jcis.2020.07.050. Epub 2020 Jul 15.

Abstract

HYPOTHESIS

The geometric features of charged particles at a fluid-fluid interface substantially affect their interfacial configurations and interparticle interactions (electrostatic and capillary forces). Because lenticular particles exhibit both spherical and nonspherical surface characteristics, an investigation of their interfacial phenomena can provide in-depth understanding of the relationship between the configuration and the interactions of these particles at the interface.

EXPERIMENTS

Three types of lenticular particles are prepared using a seeded emulsion polymerization method. Pair interactions at the oil-water interface are directly measured with optical laser tweezers. The numerical calculation of the attachment energy of the particle to the interface is used to predict their configuration behaviors at the interface.

FINDINGS

The lenticular particles are found to adopt either an upright or inverted configuration that can be determined stochastically. When the interface contacts the truncated boundary or the biconvex boundary, the local interface deformation-induced capillary attraction likely becomes dominant. The contact probability can be estimated on the basis of the attachment energy profile and related to the relative strengths of capillary attraction and electrostatic repulsion between two particles at the interface. Furthermore, possible artifacts in measurements of the pair interactions between nonspherical particles with optical laser tweezers are discussed, depending on their interfacial configurations.

摘要

假设

流体 - 流体界面处带电粒子的几何特征会显著影响其界面构型和粒子间相互作用(静电力和毛细力)。由于透镜状粒子兼具球形和非球形表面特征,对其界面现象的研究能够深入理解这些粒子在界面处的构型与相互作用之间的关系。

实验

采用种子乳液聚合法制备了三种类型的透镜状粒子。利用光学激光镊子直接测量油水界面处的成对相互作用。通过数值计算粒子与界面的附着能来预测其在界面处的构型行为。

发现

透镜状粒子呈现出随机确定的直立或倒置构型。当界面接触截顶边界或双凸边界时,局部界面变形引起的毛细吸引力可能占主导地位。接触概率可根据附着能分布进行估算,并与界面处两个粒子间毛细吸引力和静电排斥力的相对强度相关。此外,还讨论了使用光学激光镊子测量非球形粒子间成对相互作用时,根据其界面构型可能出现的测量误差。

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