Shape changes of a single hairy particle with mobile ligands at a liquid-liquid interface

IF 0.9 4区 物理与天体物理 Q4 PHYSICS, CONDENSED MATTER Condensed Matter Physics Pub Date : 2024-03-21 DOI:10.5488/CMP.27.13602
T. Staszewski, M. Bor'owko
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Abstract

We investigate rearrangements of a single hairy particle at a liquid-liquid interface using coarse-grained molecular dynamics simulations. We consider the particles with the same (symmetrical interactions) and different (asymmetrical interactions) affinity to the liquids. We show how ligand mobility affects the behavior of the hairy particle at the liquid-liquid interface. We found that such a hairy particle can take various shapes at the interface. For example, a Janus-like snowman consisting of a segment cluster and a bare part of the core, Saturn-like structures, and the core with a wide “plume” on one side. A configuration of the particle at the interface is characterized by the vertical displacement distance and the orientation of the particle relative to the phase boundary. The selected descriptors are used to characterize the shape of the segment cloud. We found that the shape of a particle and its localization at the interface can be determined by tuning the interactions with the liquids.
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带有移动配体的单个毛状颗粒在液-液界面上的形状变化
我们利用粗粒度分子动力学模拟研究了单个毛状颗粒在液-液界面上的重排。我们考虑了与液体具有相同(对称相互作用)和不同(不对称相互作用)亲和力的粒子。我们展示了配体流动性如何影响毛状颗粒在液-液界面上的行为。我们发现,这种毛状颗粒在界面上可以呈现各种形状。例如,由段簇和核心裸露部分组成的杰纳斯式雪人、土星式结构以及核心一侧带有宽阔 "羽流 "的结构。粒子在界面上的构型由垂直位移距离和粒子相对于相边界的方向来描述。所选描述符用于描述段云的形状。我们发现,粒子的形状及其在界面上的定位可以通过调整与液体的相互作用来确定。
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来源期刊
Condensed Matter Physics
Condensed Matter Physics 物理-物理:凝聚态物理
CiteScore
1.10
自引率
16.70%
发文量
17
审稿时长
1 months
期刊介绍: Condensed Matter Physics contains original and review articles in the field of statistical mechanics and thermodynamics of equilibrium and nonequilibrium processes, relativistic mechanics of interacting particle systems.The main attention is paid to physics of solid, liquid and amorphous systems, phase equilibria and phase transitions, thermal, structural, electric, magnetic and optical properties of condensed matter. Condensed Matter Physics is published quarterly.
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