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刘丽课题组 赵汉英课题组 | ANGEWANDTE CHEMIE-INTERNATIONAL EDITION

发布人:    发布时间:2019/08/16   浏览次数:

Surface Reconstruction by a Coassembly Approach

Zhao, Y (Zhao, Ya)[ 1 ] ; Liu, L (Liu, Li)[ 1 ] ; Zhao, HY (Zhao, Hanying)[ 1,2 ]


ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2019, 58(31): 10577-10581

DOI: 10.1002/anie.201903798


摘要

Materials with switchable surfaces, capable of changing surface properties under external stimuli, are playing a pivotal role in many applications, such as tissue engineering, biosensors, and drug/protein delivery. In this research silica particles with patterned and switchable surfaces are fabricated. Surface micelles on silica particles are formed by coassembly of polymer brushes and "free" block copolymer chains in a selective solvent. The cores of the surface micelles are crosslinked by anthracene photodimerization. After quaternization of the coronae, amphiphilic surface micelles are prepared. The surface micelles are able to rearrange in different media. After treatment with an organic solvent, the surfaces of silica particles are occupied by hydrophobic polymer components; in aqueous solution, the positively charged polymer chains are on the surfaces. The switching of the surface micelles results in changes in surface composition and wetting behaviors.