功能高分子材料教育部重点实验室

近期发表论文
当前位置: 首页 > 科技创新 > 近期发表论文 > 正文

李宝会课题组 | POLYMER

发布人:功能高分子材料教育部重点实验室    发布时间:2019/06/14   浏览次数:

Janus onions of block copolymers via confined self-assembly

Cui, TT (Cui, Tingting)1 ] Li, XY (Li, Xingye)2 ] Dong, B (Dong, Bin)3 ] Li, X (Li, Xiang)1 ] Guo, MX (Guo, Mengxue)1 ] Wu, LX (Wu, Lixin)1 ] Li, BH(Li, Baohui)2 ] Li, HL (Li, Haolong)1 ]

POLYMER, 2019, 174: 70-76

DOI: 10.1016/j.polymer.2019.04.062

Abstract

Droplet-confined assembly is a powerful tool to fabricate functional nanostructures of block copolymers (BCPs), where the interfacial interaction plays a crucial role. Here, we report an unconventional strategy of using interfacial phase separation to control this assembly. The key lies in the use of an elaborately designed binary surfactant system to tune the interfacial configuration of droplets and realize an asymmetrically directed assembly of BCPs inside droplets, which finally creates unprecedented Janus onion particles with solid surfactantlike properties, e.g., as stabilizers for Pickering emulsions. The formation of Janus onions is due to the strong longitudinal selective interaction and the strong lateral phase separation at the droplet interfaces, provided by our surfactant system. This concept of interfacial phase separation directed assembly not only enriches the routes to controllable assembly of BCPs, but also offers an innovative paradigm to construct distinct regions on droplet surfaces, illuminating potential functions such as smart encapsulation and delivery.