Block Copolymer Colloidal Particles with Unique Structures through Three-dimensional Confined Assembly and Disassembly

Block Copolymer Colloidal Particles with Unique Structures through Three-dimensional Confined Assembly and Disassembly

论文摘要

Structured block copolymer(BCP) particles have gained increasing attention due to their potential applications in separation,catalysis, controlled release, and other fields. Three-dimensional(3D) confined assembly has been proved as a facile yet robust approach for generating BCP particles with controllable shapes and internal structures. In this feature article, we summarized the preparation of structured polymeric particles through 3D confined self-assembly of BCPs. The effects of interfacial interactions, degree of confinement,and additives on the shape and internal structure of BCP microparticles were comprehensively discussed. In addition, we highlighted the recent progress in using disassembly as a route to synthesize colloidal particles with unique structures. Two strategies were introduced in this part:(a) disassembling the discrete domains resulted in mesoporous microparticles;(b) disassembling the continuous domains led to the dissociation of microparticles into micelle-like nano-objects. The applications of the structured colloidal particles in photonic crystals,controlled release, and directed growth of inorganic materials were also presented. Finally, we discussed the current challenges and future opportunities in this promising area.

论文目录

  • INTRODUCTION
  • STRUCTURED MICROPARTICLES THROUGH3D CONFINED ASSEMBLY
  •   Effect of Interfacial Interactions
  •   Effect of the Degree of Confinement
  •   Effect of Additives
  • DISASSEMBLY AS A ROUTE TO UNIQUE STRUCTURES
  •   Mesoporous BCP Microparticles
  •   Unique Micelle-like Nano-objects
  • APPLICATIONS OF THE COLLOIDAL PARTICLES
  • CONCLUSIONS AND PERSPECTIVE
  • 文章来源

    类型: 期刊论文

    作者: Jiang-Ping Xu,Jin-Tao Zhu

    来源: Chinese Journal of Polymer Science 2019年08期

    年度: 2019

    分类: 工程科技Ⅰ辑

    专业: 有机化工

    单位: Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, Hubei Key Laboratory of Materials Chemistry and Service Failure, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology (HUST),State Key Laboratory of Materials Processing and Mold Technology,HUST

    基金: financially supported by the National Natural Science Foundation of China (Nos. 51525302 and 51811540404),Program for HUST Academic Frontier Youth Team (No. 2015-01),the Fundamental Research Funds for the Central Universities (No. 2019kfyXJJS077)

    分类号: TQ317

    页码: 744-759

    总页数: 16

    文件大小: 92263K

    下载量: 37

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