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Grafting of carboxybetaine polymers to polyethylene membranes via plasma graft polymerization to improve low-fouling properties and to tune the molecular weight cut-off

机译:通过等离子体接枝聚合从聚乙烯膜接枝到聚乙烯膜,以改善低结垢性能并调整分子量截止

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摘要

A novel strategy for preparing low-fouling ultrafiltration membranes with tunable molecular weight cut-offs (MWCOs) from microfiltration membranes as substrates was demonstrated. In this method, carboxybetaine polymers were grafted onto the surface and pore walls of the microfiltration membranes that had pore sizes in the tens of nanometers. One of the roles of the grafted carboxybetaine polymers is to give low-fouling property, and the other is to reduce and tune the pore sizes. The plasma graft polymerization method was employed to graft the carboxybetaine polymers, and the characterization using FT-IR and FE-SEM demonstrated that the grafting was successful. We then demonstrated the grafted membranes showed excellent low-fouling properties against not only bovine serum albumin but also dextrans using the adsorption tests and the permeation tests. Additionally, we showed that the MWCOs of the ultrafiltration membranes prepared in this method can be tuned in the range from 5 x 10(3) to 5 x 10(5) by the grafting amounts.
机译:证实了一种新的一种新的策略,用于从微滤膜作为基质的微滤膜的可调谐分子量切断(MWCO)的低污染超滤膜。在该方法中,羧基本替替纳聚合物接枝到微滤膜的表面和孔壁上,所述微滤膜在几十纳米中具有孔径的孔径。接枝的羧基本替丹聚合物的作用之一是给予低污垢性能,另一个是减少和调整孔径。采用血浆接枝聚合方法接枝羧基脲聚合物,使用FT-IR和Fe-SEM的表征证明了嫁接成功。然后,我们证明了接枝膜,呈现出优异的低结垢性能,而不仅可以防止牛血清白蛋白,而且使用吸附试验和渗透测试。另外,我们表明,在该方法中制备的超滤膜的MWCO可以通过移植量从5×10(3)至5×10(5)的范围内调谐。

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