Department of Chemistry, University of Tennessee, Knoxville, Tennessee 37996, United States.
J Phys Chem B. 2021 Jun 24;125(24):6373-6389. doi: 10.1021/acs.jpcb.1c01819. Epub 2021 May 27.
Bottlebrush polymers (BBPs), composed of relatively short polymeric side chains densely grafted on a polymer backbone, exhibit many unique characteristics and hold promise for a variety of applications. This Perspective focuses on environmentally induced shape-changing behavior of BBPs at interface and in solution, particularly worm/star-globule shape transitions. While BBPs with a single type of homopolymer or random copolymer side chains have been shown to undergo pronounced worm-to-globule shape changes in response to external stimuli, the collapsed brushes are unstable and prone to aggregation. By introducing a second, solvophilic polymer into the side chains, either as a distinct type of side chain or as the outer block of block copolymer side chains, the collapsed brushes not only are stabilized but also create unimolecular micellar nanostructures, which can be used for, e.g., encapsulation and delivery of substances. The current challenges in the design, synthesis, and characterization of stimuli-responsive shape-changing BBPs are discussed.
瓶刷聚合物(BBPs)由相对较短的聚合物侧链密集接枝在聚合物主链上组成,具有许多独特的特性,并有望应用于多种领域。本观点重点关注 BBPs 在界面和溶液中环境诱导的形状变化行为,特别是蠕虫/球粒形状转变。虽然已经证明具有单一类型的均聚物或无规共聚物侧链的 BBPs 会对外界刺激发生明显的蠕虫到球粒形状变化,但塌陷的刷状结构不稳定且容易聚集。通过在侧链中引入第二种亲溶剂聚合物,无论是作为一种独特类型的侧链还是作为嵌段共聚物侧链的外嵌段,塌陷的刷状结构不仅得到稳定,而且还会形成单分子胶束纳米结构,可用于例如物质的封装和输送。目前在设计、合成和表征刺激响应形状变化 BBPs 方面存在的挑战进行了讨论。