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带电软盘与球体混合物的相行为。

Phase behaviour of mixtures of charged soft disks and spheres.

作者信息

Mazzilli Valerio, Satoh Katsuhiko, Saielli Giacomo

机构信息

Department of Chemical Sciences, University of Padova, Via Marzolo 1, 35131 Padova, Italy.

CNR-ITM, Institute on Membrane Technology, Padova Unit, Via Marzolo, 1, 35131 Padova, Italy.

出版信息

Soft Matter. 2023 May 10;19(18):3311-3324. doi: 10.1039/d3sm00223c.

Abstract

We have investigated the phase behaviour of mixtures of soft disks (Gay-Berne oblate ellipsoids, GB) and soft spheres (Lennard-Jones, LJ) with opposite charge as a model of ionic liquid crystals and colloidal suspensions. We have used constant volume Molecular Dynamics simulations and fixed the stoichiometry of the mixture in order to have electroneutrality; three systems have been selected GB : LJ = 1 : 2, GB : LJ = 1 : 1 and GB : LJ = 2 : 1. For each system we have selected three values of the scaled point charge * of the GB particles, namely 0.5, 1.0 and 2.0 (and a corresponding negative scaled charge of the LJ particles that depends on the stoichiometric ratio). We have found a very rich mesomorphism with the formation, as a function of the scaled temperature, of the isotropic phase, the discotic nematic phase, the hexagonal columnar phase and crystal phases. While the structure of the high temperature phases was similar in all systems, the hexagonal columnar phases exhibited a highly variable morphology depending on the scaled charge and stoichiometry. On the one hand, GB : LJ = 1 : 2 systems form lamellar structures, akin to smectic phases, with an alternation of layers of disks (exhibiting an hexagonal columnar phase) and layers of LJ particles (in the isotropic phase). On the other hand, for the 2 : 1 stoichiometry we observe the formation of a frustrated hexagonal columnar phase with an alternating tilt direction of the molecular axis. We rationalize these findings based on the structure of the neutral ion pair dominating the behaviour at low temperature and high charge.

摘要

我们研究了软盘(盖伊 - 伯尔尼扁椭球体,GB)和带相反电荷的软球( Lennard-Jones,LJ)混合物的相行为,以此作为离子液晶和胶体悬浮液的模型。我们使用了恒容分子动力学模拟,并固定混合物的化学计量比以实现电中性;选择了三个系统,GB : LJ = 1 : 2、GB : LJ = 1 : 1和GB : LJ = 2 : 1。对于每个系统,我们选择了GB粒子的三个标度点电荷*值,即0.5、1.0和2.0(以及LJ粒子相应的负标度电荷,其取决于化学计量比)。我们发现了非常丰富的介晶现象,随着标度温度的变化,形成了各向同性相、盘状向列相、六方柱状相和晶相。虽然所有系统中高温相的结构相似,但六方柱状相根据标度电荷和化学计量比表现出高度可变的形态。一方面,GB : LJ = 1 : 2系统形成类似于近晶相的层状结构,盘层(呈现六方柱状相)和LJ粒子层(处于各向同性相)交替排列。另一方面,对于2 : 1的化学计量比,我们观察到形成了一种受挫的六方柱状相,分子轴的倾斜方向交替变化。我们基于低温高电荷下主导行为的中性离子对的结构来解释这些发现。

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