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Antifouling Membranes Prepared from Polyethersulfone Grafted with Poly(ethylene glycol) Methacrylate by Radiation-Induced Copolymerization in Homogeneous Solution

机译:通过通过辐射诱导的均相溶液接枝聚醚砜由聚醚砜甲基丙烯酸酯制备的防污膜

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To synthesize evenly grafted copolymers, gamma radiation of homogeneous solutions was employed to graft poly(ethylene glycol) methacrylate (PEGMA) onto polyethersulfone (PES). The grafting was verified by Fourier transform infrared spectroscopy, and the degrees of grafting (DGs) were determined by elementary analysis. The PES-g -polyPEGMA copolymers with different DGs were obtained by changing the monomer concentration. Membranes were cast from pristine PES, PES/PEG blends, and PES-g -polyPEGMA with different DGs, respectively, via nonsolvent-induced phase separation. Results from water contact angle measurements and scanning electron microscopy analysis indicated that increasing DGs led to PES-g -polyPEGMA membranes with increasing hydrophilicity and porousness. Filtration experimental results showed that increasing DGs without adding pore-forming agents caused PES-g -polyPEGMA membranes with higher permeability. Compared with PES/PEG membranes with analogous permeation characteristics, in which PEG is added as a pore-forming agent, PES-g -polyPEGMA membranes exhibited superior antifouling properties.
机译:为了合成均匀接枝的共聚物,将均匀溶液的γ辐射用于将聚(乙二醇)甲基丙烯酸酯(PEGMA)移植到聚醚砜(PES)上。通过傅里叶变换红外光谱验证嫁接,通过基本分析确定接枝度(DGS)。通过改变单体浓度来获得具有不同DGS的PE- G-polyPegma共聚物。通过非olvent诱导的相分离分别从原始PE,PES / PEG共混物和PES- G-peLypegma浇铸膜,PES / PEG共混物和PES- G-POLYPEGMA。水接触角测量结果和扫描电子显微镜分析表明,随着亲水性和多孔的增加,增加的DGS导致PES- G-polyPegma膜。过滤实验结果表明,在不添加孔形成剂的情况下增加Dgs导致具有较高渗透性的PES- G-polypegma膜。与具有类似渗透特性的PES / PEG膜相比,其中将PEG作为孔形成剂加入,PES- G-POLYPEGMA膜表现出优异的防污性能。

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