Cao Yanping, Liu Shengjie, Wu Zhaoqiang, Chen Hong
College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, P. R. China.
J Mater Chem B. 2021 Mar 28;9(12):2877-2884. doi: 10.1039/d0tb03015e. Epub 2021 Mar 15.
Linear poly(N-hydroxyethylacrylamide) (PHEAA) is regarded as one of the most promising antifouling materials because of its excellent antifouling properties and good hemocompatibility. However, the antifouling performance of topological PHEAAs remains largely unknown. Herein, the preparation of antifouling surfaces based on a tadpole-shaped PHEAA coating is reported for the first time, and how the tadpole-shaped PHEAA architecture affects antifouling performance is investigated. It is shown that the tadpole-shaped PHEAA-modified surfaces exhibit better antifouling performance than linear copolymer precursor-modified surfaces with identical molar masses and chemical compositions. This may be primarily attributed to the presence of cyclic PHEAA head chain segments in the tadpole-shaped PHEAA copolymer, and the absence of interchain entanglements can facilitate the formation of smoother and densely packed grafts, which result in better antifouling properties.
线性聚(N-羟乙基丙烯酰胺)(PHEAA)因其优异的防污性能和良好的血液相容性而被视为最有前途的防污材料之一。然而,拓扑结构的PHEAAs的防污性能在很大程度上仍不清楚。在此,首次报道了基于蝌蚪形PHEAA涂层的防污表面的制备,并研究了蝌蚪形PHEAA结构如何影响防污性能。结果表明,与具有相同摩尔质量和化学组成的线性共聚物前体改性表面相比,蝌蚪形PHEAA改性表面表现出更好的防污性能。这可能主要归因于蝌蚪形PHEAA共聚物中存在环状PHEAA头链段,并且不存在链间缠结可以促进形成更光滑和紧密堆积的接枝物,从而导致更好的防污性能。