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异质带电系统在其液-液临界点的特征。

Features of heterogeneously charged systems at their liquid-liquid critical point.

作者信息

Notarmuzi Daniele, Bianchi Emanuela

机构信息

Institut für Theoretische Physik, TU Wien, Wiedner Hauptstraße 8-10, A-1040 Wien, Austria.

CNR-ISC, Uos Sapienza, Piazzale A. Moro 2, 00185 Roma, Italy.

出版信息

Soft Matter. 2024 Oct 2;20(38):7601-7614. doi: 10.1039/d4sm00750f.

Abstract

Recently synthesized colloids and biological systems such as proteins, viruses and monoclonal antibodies are heterogeneously charged, , different regions of their surfaces carry different amounts of positive or negative charge. Because of charge inhomogeneity, electrostatic interactions between these units through the surrounding medium are intrinsically anisotropic, meaning that they are characterized not only by the attraction between oppositely charged regions but also by the repulsion between like-charged areas. Recent experiments have shown that the liquid-liquid phase separation of these systems can be driven by anisotropic electrostatic interactions, but it is not clear how the emerging aggregates are affected by charge imbalance and charge patchiness. The ability to experimentally control these two quantities calls for a theoretical understanding of their interplay, which we address here at the critical point. We consider a coarse-grained model of anisotropically charged hard spheres whose interaction potential is grounded in a robust mean field theory and perform extensive numerical Monte Carlo simulations to understand the aggregation behavior of these units at the critical point. Stemming from the simplicity of the model, we address the interplay between charge imbalance and charge patchiness with the use of three parameters only and fully rationalize how these features impact the critical point of the model by means of thermodynamic-independent pair properties.

摘要

最近合成的胶体以及蛋白质、病毒和单克隆抗体等生物系统都带有不均匀电荷,即其表面的不同区域带有不同数量的正电荷或负电荷。由于电荷的不均匀性,这些单元之间通过周围介质的静电相互作用本质上是各向异性的,这意味着它们不仅具有带相反电荷区域之间的吸引力,还具有相同电荷区域之间的排斥力。最近的实验表明,这些系统的液-液相分离可以由各向异性的静电相互作用驱动,但目前尚不清楚新形成的聚集体如何受到电荷不平衡和电荷斑块化的影响。要通过实验控制这两个量,就需要从理论上理解它们之间的相互作用,我们在此临界点对此进行探讨。我们考虑一个各向异性带电硬球的粗粒化模型,其相互作用势基于一个可靠的平均场理论,并进行广泛的数值蒙特卡罗模拟,以了解这些单元在临界点的聚集行为。基于该模型的简单性,我们仅使用三个参数来探讨电荷不平衡和电荷斑块化之间的相互作用,并通过与热力学无关的对性质,全面地解释了这些特征如何影响模型的临界点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fa9/11404297/d21cc4f296ff/d4sm00750f-f1.jpg

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