Shin Jaeman J, Kim Eun Ji, Ku Kang Hee, Lee Young Jun, Hawker Craig J, Kim Bumjoon J
Materials Research Laboratory, University of California-Santa Barbara, Santa Barbara, California 93106, United States.
ACS Macro Lett. 2020 Mar 17;9(3):306-317. doi: 10.1021/acsmacrolett.0c00020. Epub 2020 Feb 13.
Confined assembly of block copolymers (BCPs) is receiving increasing attention due to the ability to create unconventional morphologies that cannot be observed in the corresponding bulk systems. This effect is further driven by the simplicity and versatility of these procedures for controlling the shape of particles prepared by 3D soft confinement of BCPs in emulsions. By taking advantage of a mobile emulsion interface, the one-step formation of nonspherical BCP particles through spontaneous deformation is possible with design principles and theoretical models for controlling shape/nanostructure now being established. This Viewpoint highlights strategies for shape tuning of BCP particles, currently accessible shapes, their controllability, and potential application. The emergence of 3D soft confinement of BCPs and related theory is overviewed with a focus on current strategies, types of nonspherical shapes achieved, and structure-property relationships for nonspherical BCP particles. Finally, the applications and future perspectives for these materials are discussed.
由于能够创造出在相应本体体系中无法观察到的非常规形态,嵌段共聚物(BCP)的受限组装受到越来越多的关注。这些通过乳液中BCP的3D软受限来控制颗粒形状的方法的简单性和通用性,进一步推动了这种效应。通过利用移动的乳液界面,通过自发变形一步形成非球形BCP颗粒成为可能,目前正在建立控制形状/纳米结构的设计原则和理论模型。本观点强调了BCP颗粒形状调节的策略、目前可实现的形状、它们的可控性以及潜在应用。概述了BCP的3D软受限的出现及相关理论,重点关注当前策略、实现的非球形形状类型以及非球形BCP颗粒的结构-性能关系。最后,讨论了这些材料的应用和未来前景。