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剪切作用下填充均匀或Janus纳米粒子的嵌段共聚物及其纳米复合材料的应力-应变行为:分子动力学模拟

Stress-strain behavior of block-copolymers and their nanocomposites filled with uniform or Janus nanoparticles under shear: a molecular dynamics simulation.

作者信息

Wang Lu, Liu Hongji, Li Fanzhu, Shen Jianxiang, Zheng Zijian, Gao Yangyang, Liu Jun, Wu Youping, Zhang Liqun

机构信息

Key Laboratory of Beijing City on Preparation and Processing of Novel Polymer Materials, People's Republic of China.

College of Materials and Textile Engineering, Jiaxing University, Jiaxing 314001, P. R. China.

出版信息

Phys Chem Chem Phys. 2016 Oct 5;18(39):27232-27244. doi: 10.1039/c6cp05853a.

Abstract

Although numerous research studies have been focused on studying the self-assembled morphologies of block-copolymers (BCPs) and their nanocomposites, little attention has been directed to explore the relation between their ordered structures and the resulting mechanical properties. We adopt coarse-grained molecular dynamics simulation to study the influence of the morphologies on the stress-strain behavior of pure block copolymers and block copolymers filled with uniform or Janus nanoparticles (NPs). At first, we examine the effect of the arrangement (di-block, tri-block, alternating-block) and the components of the pure block copolymers, and by varying the component ratio between A and B blocks, spherical, cylindrical and lamellar phases are all formed, showing that spherical domains bring the largest reinforcing effect. Then by studying BCPs filled with NPs, the Janus NPs induce stronger bond orientation of polymer chains and greater mechanical properties than the uniform NPs, when these two kinds of NPs are both located in the interface region. Meanwhile, some other anisotropic Janus NPs, such as Janus rods and Janus sheets, are incorporated to examine the effect on the morphology and the stress-strain behavior. These findings deepen our understanding of the morphology-mechanics relation of BCPs and their nanocomposites, opening up a vast number of approaches such as designing the arrangement and components of BCPs, positioning uniform or Janus NPs with different shapes and shear flow to tailor their stress-strain performance.

摘要

尽管众多研究致力于探究嵌段共聚物(BCP)及其纳米复合材料的自组装形态,但对于其有序结构与所得机械性能之间的关系却鲜有研究。我们采用粗粒化分子动力学模拟来研究形态对纯嵌段共聚物以及填充有均匀或Janus纳米粒子(NP)的嵌段共聚物应力-应变行为的影响。首先,我们研究了纯嵌段共聚物的排列方式(二嵌段、三嵌段、交替嵌段)和组分的影响,通过改变A和B嵌段之间的组分比例,形成了球形、圆柱形和层状相,表明球形域带来的增强效果最大。然后,通过研究填充有NP的BCP,当这两种NP都位于界面区域时,Janus NP比均匀NP能诱导更强的聚合物链键取向和更高的机械性能。同时,引入了一些其他各向异性的Janus NP,如Janus棒和Janus片,以研究其对形态和应力-应变行为的影响。这些发现加深了我们对BCP及其纳米复合材料形态-力学关系的理解,开辟了大量方法,如设计BCP的排列和组分、定位具有不同形状的均匀或Janus NP以及剪切流来调整其应力-应变性能。

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