Üzüm Gülenay, Akın Özmen Büşra, Tekneci Akgül Ebru, Yavuz Erdem
Department of Chemistry, Istanbul Technical University, Maslak-Istanbul 34469, Turkey.
ACS Omega. 2022 Apr 29;7(18):16127-16140. doi: 10.1021/acsomega.2c01472. eCollection 2022 May 10.
A high internal phase emulsion (HIPE) method was used to produce adsorbents with an interconnected porous structure. HIPE was prepared using vinyl benzyl chloride (VBC), divinylbenzene (DVB), -butyl acrylate, and Span80 as the organic phase and water with KSO and CaCl as the water phase. The polymerization of the organic phase produced highly porous polymers called polyHIPE, carrying two functional groups. As a result of the template method, polyHIPEs have a low surface area. To overcome this drawback, polyHIPE was hyper-cross-linked through VBC to create meso- and micropores, resulting in a higher surface area. Then the polymer surface was tailored with carboxylic acid groups by simple hydrolysis of -butyl acrylate. The adsorption performances of the acidic functional hyper-cross-linked polyHIPEs prepared for the various reaction times of 0, 15, and 60 min were compared for methylene blue. The hyper-cross-linked polyHIPEs showed an enhanced adsorption kinetics for methylene blue, and the 15 min hyper-cross-linking reaction increased the rate of methylene blue adsorption significantly. It was proven that the polyHIPE adsorbent can be reused by treating it with an aqueous acidic solution in ethanol.
采用高内相乳液(HIPE)法制备具有相互连通多孔结构的吸附剂。以苄基氯(VBC)、二乙烯基苯(DVB)、丙烯酸丁酯和Span80作为有机相,以含有KSO和CaCl的水作为水相来制备HIPE。有机相的聚合产生了称为聚HIPE的高度多孔聚合物,带有两个官能团。由于模板法,聚HIPE的表面积较低。为克服这一缺点,通过VBC对聚HIPE进行超交联以形成介孔和微孔,从而得到更高的表面积。然后通过丙烯酸丁酯的简单水解用羧酸基团对聚合物表面进行修饰。比较了在0、15和60分钟不同反应时间制备的酸性官能化超交联聚HIPE对亚甲基蓝的吸附性能。超交联聚HIPE对亚甲基蓝显示出增强的吸附动力学,15分钟的超交联反应显著提高了亚甲基蓝的吸附速率。已证明聚HIPE吸附剂通过在乙醇中用酸性水溶液处理可以重复使用。