Key Lab of Materials Chemistry for Energy Conversion & Storage (HUST) of Ministry of Education, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology (HUST), Wuhan, 430074, China.
Macromol Rapid Commun. 2022 Sep;43(18):e2200143. doi: 10.1002/marc.202200143. Epub 2022 Apr 21.
Shape-transforming block copolymer (BCP) microparticles have attracted extensive attention due to their promising applications in nanotechnology, biomedicines, interfacial science, and other fields. As their performance is highly associated to their shape and structure, it is very important to realize the precise control of particle shape. In this report, a method is proposed to regulate the shape and structure of polystyrene-b-polydimethoxysiloxane (PS-b-PDMS) microparticles by using positively charged core-crosslinked nanoparticles (CNPs) as a cosurfactant, combining with cationic surfactant cetyltrimethylammonium bromide (CTAB). The electrostatic repulsive interactions between CNPs and CTAB dominate the shape of PS-b-PDMS particles. Upon introducing NaCl, the electrostatic repulsion is reduced, resulting in the reshape of PS-b-PDMS particles from striped Janus ellipsoids to onion-like microspheres at a critical concentration of NaCl (c ). Interestingly, it is found that the critical c first increases then reaches a plateau, with the increase in the crosslinking degree of the CNPs. The work provides a simple strategy to tailor the morphology of BCPs by manipulating the electrostatic interaction.
形状转变嵌段共聚物 (BCP) 微粒由于在纳米技术、生物医学、界面科学等领域的广阔应用前景而受到广泛关注。由于其性能与形状和结构密切相关,因此实现对颗粒形状的精确控制非常重要。在本报告中,提出了一种通过使用带正电荷的核交联纳米粒子 (CNP) 作为助表面活性剂,与阳离子表面活性剂十六烷基三甲基溴化铵 (CTAB) 结合,来调节聚苯乙烯-聚二甲基硅氧烷 (PS-b-PDMS) 微粒形状和结构的方法。CNP 和 CTAB 之间的静电排斥相互作用主导 PS-b-PDMS 颗粒的形状。引入 NaCl 后,静电排斥作用降低,导致 PS-b-PDMS 颗粒从条状的 Janus 椭球体在 NaCl 临界浓度 (c) 下重塑为洋葱状微球。有趣的是,发现临界 c 首先增加然后达到一个平台,随着 CNP 交联度的增加而增加。该工作通过操纵静电相互作用提供了一种定制 BCP 形态的简单策略。