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具有可调螺距的Janus粒子自组装成螺旋结构。

Self-assembly of Janus particles into helices with tunable pitch.

作者信息

Fernández M Sobrino, Misko V R, Peeters F M

机构信息

Departement Fysica, Universiteit Antwerpen, B-2020 Antwerpen, Belgium.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Oct;92(4):042309. doi: 10.1103/PhysRevE.92.042309. Epub 2015 Oct 15.

Abstract

Janus particles present an important class of building blocks for directional assembly. These are compartmentalized colloids with two different hemispheres. In this work we consider a three-dimensional model of Janus spheres that contain one hydrophobic and one charged hemisphere. Using molecular dynamics simulations, we study the morphology of these particles when confined in a channel-like environment. The interplay between the attractive and repulsive forces on each particle gives rise to a rich phase space where the relative orientation of each particle plays a dominant role in the formation of large-scale clusters. The interest in this system is primarily due to the fact that it could give a better understanding of the mechanisms of the formation of polar membranes. A variety of ordered membranelike morphologies is found consisting of single and multiple connected chain configurations. The helicity of these chains can be chosen by simply changing the salt concentration of the solution. Special attention is given to the formation of Bernal spirals. These helices are composed of regular tetrahedra and are known to exhibit nontrivial translational and rotational symmetry.

摘要

双面粒子是用于定向组装的一类重要构建块。它们是具有两个不同半球的分隔胶体。在这项工作中,我们考虑了包含一个疏水半球和一个带电半球的双面球体的三维模型。通过分子动力学模拟,我们研究了这些粒子在类似通道的环境中受限的形态。每个粒子上吸引力和排斥力之间的相互作用产生了一个丰富的相空间,其中每个粒子的相对取向在大规模簇的形成中起主导作用。对该系统的兴趣主要源于它可以更好地理解极性膜的形成机制这一事实。发现了由单链和多链连接构型组成的各种有序的膜状形态。这些链的螺旋度可以通过简单地改变溶液的盐浓度来选择。特别关注了伯纳尔螺旋的形成。这些螺旋由规则四面体组成,并且已知具有非平凡的平移和旋转对称性。

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