Building block copolymer particles via self-assembly within a droplet

Droplet Pub Date : 2023-09-06 DOI:10.1002/dro2.81
Sen Zhang, Han Bao, Xinyi Shen, Yongyang Song, Shutao Wang
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Abstract

The self-assembly of block copolymers (BCPs) within emulsion droplets is a flexible strategy for the preparation of polymer particles. This strategy permits the fine-tuning of shapes, internal structures, and surface nanostructures of the polymer particles, thus allowing many applications. Although some literature has reviewed the BCP preparation via self-assembly within a droplet, a comprehensive summary including in-depth understanding, controllable preparation, and application is lacked. In this review, we systematically delve into the multiple mechanisms that drive BCP self-assembly within emulsion droplets, such as commensurability effects for minimizing total free energy, interfacial instability, organized spontaneous emulsification, phase separation of multiple components, and entropy effects between BCPs and nanoparticles. Additionally, a strategy combining selective cross-linking and disassembly can further generate Janus particles featuring unique structures. Next, various applications across multiple disciplines are discussed, including drug delivery, display, biomedical imaging, macromolecular separation, and fuel cells. Finally, we present an overview of the current challenges and future directions for BCP emulsion self-assembly, covering mechanism investigation, molecular design, stability control, and application exploration. We anticipate deeper understanding, more varieties, enhanced performance, and broader applications can be achieved with BCP emulsion self-assembly after addressing the challenge.

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通过液滴内的自组装构建嵌段共聚物颗粒
嵌段共聚物(BCPs)在乳液液滴中的自组装是制备聚合物颗粒的一种灵活策略。这种策略允许对聚合物颗粒的形状、内部结构和表面纳米结构进行微调,从而允许许多应用。尽管一些文献综述了通过液滴内自组装制备BCP的方法,但缺乏包括深入理解、可控制备和应用在内的全面综述。在这篇综述中,我们系统地研究了驱动BCP在乳液液滴内自组装的多种机制,如最小化总自由能的可公度效应、界面不稳定性、有组织的自发乳化、多组分的相分离以及BCP和纳米颗粒之间的熵效应。此外,结合选择性交联和拆卸的策略可以进一步产生具有独特结构的Janus颗粒。接下来,将讨论跨多个学科的各种应用,包括药物递送、显示、生物医学成像、大分子分离和燃料电池。最后,我们概述了BCP乳液自组装的当前挑战和未来方向,包括机理研究、分子设计、稳定性控制和应用探索。我们预计,在应对挑战后,BCP乳液自组装可以实现更深入的理解、更多的品种、更强的性能和更广泛的应用。
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Issue Information Front Cover, Volume 3, Number 4, October 2024 Inside Back Cover, Volume 3, Number 4, October 2024 Back Cover, Volume 3, Number 4, October 2024 Inside Front Cover, Volume 3, Number 4, October 2024
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