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具有不同内部结构的形状各向异性二嵌段共聚物颗粒

Shape-Anisotropic Diblock Copolymer Particles with Varied Internal Structures.

作者信息

Ren Min, Geng Zhen, Wang Ke, Yang Yi, Tan Zhengping, Xu Jiangping, Zhang Lianbin, Zhang Lixiong, Zhu Jintao

机构信息

Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, School of Chemistry and Chemical Engineering and State Key Laboratory of Materials Processing and Mold Technology , Huazhong University of Science and Technology , Wuhan 430074 , China.

State Key Laboratory of Materials-Oriented Chemical Engineering , Nanjing Tech University , Nanjing 210009 , China.

出版信息

Langmuir. 2019 Mar 5;35(9):3461-3469. doi: 10.1021/acs.langmuir.8b04147. Epub 2019 Feb 20.

Abstract

Anisotropic polymer particles have promising applications in various fields, whereas their preparation usually suffers from tedious procedures. Here, we introduce a facile strategy to fabricate novel shape-anisotropic particles with varied internal structures via self-assembly of block copolymers (BCPs), with perfluorooctane (PFO) as the liquid template in emulsion droplets. By increasing the volume ratio of PFO to polystyrene- block-poly(4-vinylpyridine) (PS- b-P4VP) or decreasing the initial concentration of the BCPs, the self-assembled polymer particles change from spherical core-shell structures to anisotropic particles. Moreover, the anisotropic shape and internal structure of the polymer particles, including cone-like particles with alternative PS and P4VP lamellas, crescent-shaped particles with cylindrical P4VP domains, and plate-like particles with spherical P4VP domains, can be obtained by changing the block ratio or molecular weight or by adding a hydrogen-bonding agent. Based on the in situ optical microscopy investigation of the morphology evolution of the emulsion droplet, we conclude that both kinetic and thermodynamic factors during emulsion evolution determine the formation of shape-anisotropic polymeric particles with controllable internal structures.

摘要

各向异性聚合物颗粒在各个领域都有广阔的应用前景,然而其制备过程通常较为繁琐。在此,我们介绍一种简便的策略,通过嵌段共聚物(BCPs)的自组装,以全氟辛烷(PFO)作为乳液滴中的液体模板,制备具有不同内部结构的新型形状各向异性颗粒。通过增加PFO与聚苯乙烯 - 嵌段 - 聚(4 - 乙烯基吡啶)(PS - b - P4VP)的体积比或降低BCPs的初始浓度,自组装的聚合物颗粒从球形核壳结构转变为各向异性颗粒。此外,通过改变嵌段比、分子量或添加氢键剂,可以获得聚合物颗粒的各向异性形状和内部结构,包括具有交替PS和P4VP片层的锥形颗粒、具有圆柱形P4VP域的新月形颗粒以及具有球形P4VP域的板状颗粒。基于对乳液滴形态演变的原位光学显微镜研究,我们得出结论,乳液演变过程中的动力学和热力学因素决定了具有可控内部结构的形状各向异性聚合物颗粒的形成。

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