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Antibacterial surface modified of novel nanocomposite sulfonated polyethersulfone/polyrhodanine membrane

机译:新型纳米复合磺化聚醚砜/聚若丹宁膜的抗菌表面改性

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In this study, sulfonated-polyethersulfone/polyrhodanine (SPES/PRh) membranes with antibacterial behavior were fabricated. Polyethersulfone (PES) sulfonation was performed to enhance its hydrophilicity and next polyrhodanine nanoparticles (PRhNPs) were synthesized along with the sulfonated PES (SPES) by polyrhodanine (PRh) in situ polymerization. The sulfonation step also helps making composite membrane due to development of probable bondings and polymers engagements. The constructed membranes characterization was performed by FTIR, FESEM, contact angle, H-1 NMR, TGA and EDS analyses. SPES/PRh membrane had enhanced hydrophilicity and consequently better fluxes for aqueous solutions. The composite SPES/PRh membrane flux was improved to 139/78 L/m(2) h comparing 58.21 L/m(2) h for SPES one. Membrane operational performances, antibacterial and antibiofouling tests showed improved flux, better rejection and appropriate antibacterial and antibiofouling properties for SPES/PRh membrane. The 100% bacteria mortality for specified concentrations and appropriate inhibition zones up to 9 mm have been achieved. It is generally a suitable membrane to provide proper performance beside antibacterial and antibiofouling behavior. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项研究中,制作了具有抗菌性能的磺化聚醚砜/聚罗丹宁(SPES / PRh)膜。进行聚醚砜(PES)磺化以增强其亲水性,然后通过聚罗丹宁(PRh)原位聚合合成接下来的聚罗丹宁纳米颗粒(PRhNPs)和磺化PES(SPES)。由于可能的键合和聚合物结合的发展,磺化步骤还有助于制造复合膜。通过FTIR,FESEM,接触角,H-1 NMR,TGA和EDS分析对所构建的膜进行表征。 SPES / PRh膜具有增强的亲水性,因此对水溶液具有更好的通量。复合SPES / PRh膜通量提高到139/78 L / m(2)h,而SPES 1则为58.21 L / m(2)h。膜的操作性能,抗菌和抗生物污垢测试表明,SPES / PRh膜的通量得到了改善,具有更好的排斥性,并具有适当的抗菌和抗生物污垢特性。达到指定浓度时的100%细菌死亡率和高达9 mm的适当抑制区。通常它是合适的膜,可提供除抗菌和抗生物污垢行为外的适当性能。 (C)2017 Elsevier B.V.保留所有权利。

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