Ma Sisi, Lin Ligang, Wang Qi, Zhang Yuhui, Zhang Honglei, Gao Yixin, Xu Lin, Pan Fusheng, Zhang Yuzhong
State Key Laboratory of Separation Membranes and Membrane Processes , Tianjin Polytechnic University , Tianjin 300387 , P. R. China.
Key Laboratory for Green Chemical Technology of Ministry of Education, School of Chemical Engineering and Technology , Tianjin University , Tianjin 300072 , P. R. China.
ACS Appl Mater Interfaces. 2019 Aug 7;11(31):28527-28537. doi: 10.1021/acsami.9b08865. Epub 2019 Jul 24.
A three-dimensional (3D) strategy for the fabrication of ethylene vinyl alcohol (EVAL) membranes with a dynamic surface was developed based on sliding supramolecular polymer brushes (SSPBs). The SSPBs with a 3D hydrophilic structure were introduced into the alkyne-EVAL membrane matrix via an azide-alkyne click coupling reaction. The self-mobile hydrophilic slide-rings in the SSPB provided a proactive exclusion system. This resulted in reduced direct contact of the membrane surface with multiple pollutants such as bovine serum albumin (BSA) and oil droplets. The EVAL-SSPB membrane demonstrated increased surface hydrophilicity, underwater oleophobicity, and antifouling properties. More importantly, the abundant hydrophilic rings in the membrane matrix result in supramolecular assembly and efficient hydrophilic sliding channels. This resulted in a dramatic increase in the water flux [2000 L/(m h)] while retaining a 96% rejection of BSA and oil/water emulsions. The results of the study indicate that three effects of the cyclodextrins rings, i.e., the hydrophilic effect, the exclusion effect, and the sliding effect, enabled the improved membrane performance. The demonstrated 3D fabrication strategy is versatile, facile, and scalable, which allows for its application to various other membranes. The fabricated materials possess excellent permeability and separation efficiencies, which make them attractive candidates for use as separation membranes with novel functions.
基于滑动超分子聚合物刷(SSPBs),开发了一种用于制备具有动态表面的乙烯-乙烯醇(EVAL)膜的三维(3D)策略。通过叠氮化物-炔烃点击偶联反应,将具有三维亲水结构的SSPBs引入到炔基-EVAL膜基质中。SSPBs中可自移动的亲水滑环提供了一个主动排斥系统。这减少了膜表面与多种污染物(如牛血清白蛋白(BSA)和油滴)的直接接触。EVAL-SSPB膜表现出增强的表面亲水性、水下疏油性和抗污染性能。更重要的是,膜基质中丰富的亲水环导致超分子组装和高效的亲水滑动通道。这使得水通量显著增加[2000 L/(m²·h)],同时对BSA和油/水乳液的截留率保持在96%。研究结果表明,环糊精环的三种效应,即亲水效应、排斥效应和滑动效应,使得膜性能得到改善。所展示的三维制备策略具有通用性、简便性和可扩展性,这使其能够应用于各种其他膜。所制备的材料具有优异的渗透性和分离效率,使其成为具有新型功能的分离膜的有吸引力的候选材料。