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Synthesis and characterization of poly(arylene ether ketone) copolymers with pendant carboxylic acid groups for antifouling ultrafiltration membrane

机译:侧挂羧酸基聚芳撑醚酮共聚物的防污超滤膜的合成与表征

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摘要

This work focused on the synthesis of a series of poly(arylene ether ketone) random copolymers with various controlled pendant carboxylic acid groups (PEAK-COOH) by direct copolymerization method and the preparation of antifouling ultrafiltration membranes via the conventional immersion precipitation phase inversion method. The morphologies of the PEAK-COOH membranes were investigated by scanning electron microscopy. In addition, the surface hydrophilicity and charged property of the PEAK-COOH membranes were studied by water contact angle and membrane potential measurements, and the results indicated that the introduction of COOH on the polymer chains of membrane materials was really an effective way to negatively charge the membrane and enhance the hydrophilicity. The pure water flux and protein solution permeation through the prepared membranes were increased with the increase in the content of carboxylic acid groups. The cycle ultrafiltration experiments for protein solution revealed that nonspecific protein adsorption, especially irreversible protein adsorption, for the PEAK-COOH membranes, was significantly reduced, suggesting superior antifouling performance.
机译:这项工作的重点是通过直接共聚法合成一系列具有各种可控制的侧链羧酸基团(PEAK-COOH)的聚(亚芳基醚酮)无规共聚物,并通过常规的浸没沉淀相转化法制备防污超滤膜。通过扫描电子显微镜研究了PEAK-COOH膜的形态。另外,通过水接触角和膜电位的测量研究了PEAK-COOH膜的表面亲水性和带电性,结果表明在膜材料的聚合物链上引入COOH确实是使负电荷带电的有效方法。膜并增强亲水性。随着羧酸基团含量的增加,纯水通量和通过制备的膜的蛋白质溶液的渗透率增加。蛋白质溶液的循环超滤实验表明,PEAK-COOH膜的非特异性蛋白质吸附(尤其是不可逆的蛋白质吸附)显着降低,表明具有优异的防污性能。

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