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通过分子动力学模拟揭示直流电场作用下油包水乳液中液滴与油水界面之间的部分聚并现象

Unraveling Partial Coalescence Between Droplet and Oil-Water Interface in Water-in-Oil Emulsions under a Direct-Current Electric Field via Molecular Dynamics Simulation.

作者信息

Li Ning, Pang Yunhui, Sun Zhiqian, Sun Xiaoyu, Li Wangqing, Sun Yongxiang, Zhu Liyun, Li Bin, Wang Zhenbo, Zeng Hongbo

机构信息

College of New Energy, China University of Petroleum (East China), Qingdao 266580, China.

Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G1H9, Canada.

出版信息

Langmuir. 2024 Mar 19;40(11):5992-6003. doi: 10.1021/acs.langmuir.3c04024. Epub 2024 Mar 6.

Abstract

When the electric field strength () surpasses a certain threshold, secondary droplets are generated during the coalescence between water droplets in oil and the oil-water interface (so-called the droplet-interface partial coalescence phenomenon), resulting in a lower efficiency of droplet electrocoalescence. This study employs molecular dynamics (MD) simulations to investigate the droplet-interface partial coalescence phenomenon under direct current (DC) electric fields. The results demonstrate that intermolecular interactions, particularly the formation of hydrogen bonds, play a crucial role in dipole-dipole coalescence. Droplet-interface partial coalescence is categorized into five regimes based on droplet morphology. During the contact and fusion of the droplet with the water layer, the dipole moment of the droplet exhibits alternating increases and decreases along the electric field direction. Electric field forces acting on sodium ions and the internal interactions within droplets promote the process of droplet-interface partial coalescence. High field strengths cause significant elongation of the droplet, leading to its fragmentation into multiple segments. The migration of hydrated ions has a dual impact on the droplet-interface partial coalescence, with both facilitative and suppressive effects. The time required for droplet-interface partial coalescence initially decreases and subsequently increases as the field strength increases, depending on the competitive relationship between the extent of droplet stretching and the electric field force. This work provides molecular insights into the droplet-interface coalescence mechanisms in water-in-oil emulsions under DC electric fields.

摘要

当电场强度()超过某一阈值时,在油包水乳液中水滴与油水界面合并过程中会产生二次液滴(即所谓的液滴 - 界面部分合并现象),导致液滴电合并效率降低。本研究采用分子动力学(MD)模拟来研究直流(DC)电场下的液滴 - 界面部分合并现象。结果表明,分子间相互作用,特别是氢键的形成,在偶极 - 偶极合并中起着关键作用。基于液滴形态,液滴 - 界面部分合并可分为五种状态。在液滴与水层接触和融合过程中,液滴的偶极矩沿电场方向呈现交替增减。作用于钠离子的电场力和液滴内部相互作用促进了液滴 - 界面部分合并过程。高场强会使液滴显著伸长,导致其破碎成多个片段。水合离子的迁移对液滴 - 界面部分合并有双重影响,既有促进作用也有抑制作用。液滴 - 界面部分合并所需时间随着场强增加先减少后增加,这取决于液滴拉伸程度与电场力之间的竞争关系。这项工作为直流电场下油包水乳液中的液滴 - 界面合并机制提供了分子层面的见解。

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