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Amphiphilic Block Copolymer of Poly(dimethylsiloxane)and Methoxypolyethylene Glycols for High-Permeable Polysulfone MembranePreparation

机译:聚二甲基硅氧烷的两亲嵌段共聚物和甲氧基聚乙二醇用于高渗透性聚砜膜制备

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摘要

Poly(dimethylsiloxane)-block-methoxypolyethylene glycols (PDMS-b-mPEG) were synthesized by Steglich esterification. The high-permeable membrane (PSf/PDMS-b-mPEG) was prepared by using PDMS-b-mPEG as additives. The successful synthesis of PDMS-b-mPEG was confirmed by nuclear magnetic resonance. Field emission scanning electron microscopy images show that the distribution of finger-like macroporous and sponge-like macroporous can be modulated by controlling the ratio of the hydrophilic/hydrophobic components of additives. The distribution of additives and membrane wettability are validated with X-ray photoelectron spectroscopy and water contact angle test. The permeability of the blended membrane, especially for the membrane PSf/PDMS-b-mPEG1900 (M3), was remarkably improved. The water permeability of M3 (239.4 L/m2·h·bar) was 6.6 times that of the unblended membrane M0 (42.5 L/m2·h·bar). The findings of protein BSA filtration show that the flux recovery ratio of M3 is 89.2% at a BSA retention rate of about 80%, which demonstrates that the polysulfone membranes blended with PDMS-b-mPEG have excellent antifouling performance and extraordinary permeability.
机译:通过Steglich酯化反应合成了聚二甲基硅氧烷嵌段的甲氧基聚乙二醇(PDMS-b-mPEG)。使用PDMS-b-mPEG作为添加剂制备高渗透膜(PSf / PDMS-b-mPEG)。 PDMS-b-mPEG的成功合成已通过核磁共振证实。场发射扫描电子显微镜图像显示,可以通过控制添加剂的亲水/疏水成分的比例来调节手指状大孔和海绵状大孔的分布。 X射线光电子能谱和水接触角试验验证了添加剂的分布和膜的润湿性。混合膜的渗透性,特别是对PSf / PDMS-b-mPEG1900(M3)膜的渗透性显着提高。 M3的透水率(239.4 L / m 2 ·h·bar)是未混合膜M0(42.5 L / m 2 ·h·bar)的6.6倍。 。蛋白质BSA过滤的结果表明,在BSA保留率约为80%的情况下,M3的通量回收率为89.2%,这表明与PDMS-b-mPEG混合的聚砜膜具有出色的防污性能和出色的渗透性。

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