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具有柔软内表面的球形受限空间中ABA星型聚合物与纳米颗粒的相行为

Phase Behaviors of ABA Star Polymer and Nanoparticles Confined in a Sphere with Soft Inner Surface.

作者信息

Sun Minna, Zhang Zhiwei, Li Ying, Li Wen, Liao Qingwei, Qin Lei

机构信息

Beijing Key Laboratory for Sensors, Beijing Information Science and Technology University, Beijing 100192, China.

Beijing Key Laboratory for Optoelectronic Measurement Technology, Beijing Information Science and Technology University, Beijing 100192, China.

出版信息

Polymers (Basel). 2022 Apr 15;14(8):1610. doi: 10.3390/polym14081610.

Abstract

The phase behaviors of an ABA star polymer and nanoparticles confined in a sphere with soft inner surface, which is grafted with homopolymer brushes have been studied by the self-consistent field theory (SCFT). The morphologies of mixture in the center slice of sphere were focused. Two cases are considered: one is that the nanoparticles interact with the B blocks and the other is that the nanoparticles preferentially wet the B blocks. Under the two conditions, through changing the block ratio of the ABA star polymer, the concentration and radius of the nanoparticles, the phase behaviors of the mixtures confined the soft sphere are studied systematically. With increasing the concentration of nanoparticles, the entropy and the steric repulsive interaction of nanoparticles, and the nanoparticle density distributions along the perpendicular line through the center of sphere are plotted. The phase diagram is also constructed to analyze the effects of the nanoparticle volume fraction and radius on morphologies of ABA star polymers, and to study the effect of confinement on the phase behaviors. The results in this work provide a useful reference for controlling the ordered structures in experiment, which is an effective way to fabricate the newly multifunctional materials.

摘要

采用自洽场理论(SCFT)研究了一种ABA型星形聚合物与纳米粒子在具有接枝均聚物刷的软内表面球体中的相行为。重点关注了球体中心切片处混合物的形态。考虑了两种情况:一种是纳米粒子与B嵌段相互作用,另一种是纳米粒子优先润湿B嵌段。在这两种条件下,通过改变ABA型星形聚合物的嵌段比、纳米粒子的浓度和半径,系统地研究了受限在软球体内的混合物的相行为。随着纳米粒子浓度的增加,绘制了纳米粒子的熵和空间排斥相互作用以及沿通过球体中心的垂直线的纳米粒子密度分布。还构建了相图,以分析纳米粒子体积分数和半径对ABA型星形聚合物形态的影响,并研究限制对相行为的影响。这项工作的结果为在实验中控制有序结构提供了有用的参考,这是制造新型多功能材料的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fd7/9027891/3002ff87367a/polymers-14-01610-g001.jpg

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