Quasi-two-dimensional dispersions of Brownian particles with competitive interactions: phase behavior and structural properties.

IF 2.9 3区 化学 Q3 CHEMISTRY, PHYSICAL Soft Matter Pub Date : 2024-10-17 DOI:10.1039/d4sm00736k
Zihan Tan, Vania Calandrini, Jan K G Dhont, Gerhard Nägele
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Abstract

Competing short-range attractive (SA) and long range repulsive (LR) particle interactions can be used to describe three-dimensional charge-stabilized colloid or protein dispersions at low added salt concentrations, as well as membrane proteins with interaction contributions mediated by lipid molecules. Using Langevin dynamics (LD) simulations, we determine the generalized phase diagram, cluster shapes and size distributions of a generic quasi-two-dimensional (Q2D) dispersion of spherical SALR particles confined to in-plane motion inside a bulk fluid. The SA and LR interaction parts are modelled by a generalized Lennard-Jones potential and a screened Coulomb potential, respectively. The microstructures of the detected equilibrium and non-equilibrium Q2D phases are distinctly different from those observed in three-dimensional (3D) SALR systems, by exhibiting different levels of hexagonal ordering. We discuss a thermodynamic perturbation theory prediction for the metastable binodal line of a reference system of particles with SA interactions only, which in the explored Q2D-SALR phase diagram region separates cluster from non-clustered phases. The transition from the high-temperature (small SA) dispersed fluid (DF) phase to the lower-temperature equilibrium cluster (EC) fluid phase is characterised by a low-wavenumber peak height of the static structure factor (corresponding to a thermal correlation length of about twice the particle diameter) featuring a distinctly smaller value (≈1.4) than in 3D SALR systems. With decreasing temperature (increasing SA), the cluster morphology changes from disk-like shapes in the equilibrium cluster phase, to double-stranded anisotropic hexagonal cluster segments formed in a cluster-percolated (CP) gel-like phase. This transition can be quantified by a hexagonal order parameter distribution function. The mean cluster size and coordination number of particles in the CP phase are insensitive to changes in the attraction strength.

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具有竞争性相互作用的布朗粒子的准二维分散:相行为和结构特性。
竞争性短程吸引(SA)和长程排斥(LR)粒子相互作用可用于描述低添加盐浓度下的三维电荷稳定胶体或蛋白质分散体,以及由脂质分子介导相互作用的膜蛋白。利用朗格文动力学(LD)模拟,我们确定了球形 SALR 粒子在散装流体中限制在平面内运动的通用准二维(Q2D)分散体的广义相图、团簇形状和粒度分布。SA和LR相互作用部分分别由广义伦纳德-琼斯势和屏蔽库仑势模拟。检测到的平衡和非平衡 Q2D 相的微观结构与在三维(3D)SALR 系统中观察到的明显不同,表现出不同程度的六方有序性。我们讨论了热力学扰动理论对仅具有 SA 相互作用的参考粒子系统的可陨双顶线的预测,该预测在所探索的 Q2D-SALR 相图区域中将团簇相与非团簇相区分开来。从高温(小 SA)分散流体(DF)相到低温平衡团聚流体(EC)相的过渡特征是静态结构因子的低波长峰高(对应的热相关长度约为粒子直径的两倍)明显小于三维 SALR 系统的值(≈1.4)。随着温度的降低(SA 的增加),团簇形态从平衡团簇相中的圆盘状形状转变为在团簇脆化(CP)凝胶状相中形成的双链各向异性六边形团簇片段。这种转变可以通过六方阶次参数分布函数来量化。在 CP 相中,粒子的平均簇大小和配位数对吸引强度的变化不敏感。
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来源期刊
Soft Matter
Soft Matter 工程技术-材料科学:综合
CiteScore
6.00
自引率
5.90%
发文量
891
审稿时长
1.9 months
期刊介绍: Where physics meets chemistry meets biology for fundamental soft matter research.
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