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软质雅努斯粒子三维体系直接自组装形成的双层薄片中的多个二维晶体结构。

Multiple 2D crystal structures in bilayered lamellae from the direct self-assembly of 3D systems of soft Janus particles.

作者信息

Sun Yu-Wei, Li Zhan-Wei, Sun Zhao-Yan

机构信息

State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China.

University of Science and Technology of China, Hefei, 230026, China.

出版信息

Phys Chem Chem Phys. 2022 Mar 30;24(13):7874-7881. doi: 10.1039/d1cp05894k.

Abstract

Numerous crystals and Frank-Kasper phases in two-dimensional (2D) systems of soft particles have been presented by theoretical investigations. How to realize 2D crystals or Frank-Kasper phases the direct self-assembly of three-dimensional (3D) systems remains an important issue. Here, through numerical simulations, we report the surprising finding of multiple 2D crystal structures in bilayered lamellae from the direct self-assembly of 3D systems of soft Janus particles. With varying the patch size and particle density, soft Janus particles, which exhibit very similar self-assembly behavior to giant amphiphiles, spontaneously form ordered bilayered lamellae. Within each layer of the bilayered lamellae, we find abundant highly-ordered 2D crystals including the Frank-Kasper σ phase and open kagome lattice. The kinetic mechanisms of the formation of these 2D crystals within the layers are revealed, and include a classical one-step nucleation mechanism and a two-step nucleation mechanism. Our findings suggest a simple route towards 2D crystals the direct self-assembly of 3D systems of amphiphilic Janus building blocks.

摘要

理论研究已经揭示了软颗粒二维(2D)系统中的大量晶体和弗兰克-卡斯帕相。如何通过三维(3D)系统的直接自组装来实现二维晶体或弗兰克-卡斯帕相仍然是一个重要问题。在这里,通过数值模拟,我们报告了从软雅努斯颗粒三维系统的直接自组装中在双层薄片中发现多种二维晶体结构这一惊人发现。随着补丁尺寸和颗粒密度的变化,表现出与巨型两亲分子非常相似自组装行为的软雅努斯颗粒自发形成有序的双层薄片。在双层薄片的每一层内,我们发现了丰富的高度有序二维晶体,包括弗兰克-卡斯帕σ相和开放的 Kagome 晶格。揭示了这些二维晶体在层内形成的动力学机制,包括经典的一步成核机制和两步成核机制。我们的发现为通过两亲性雅努斯结构单元三维系统的直接自组装来制备二维晶体提供了一条简单途径。

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