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A sulfonated polymer membrane with Ag-based graft: morphology, characterization, antimicrobial activity and interception ability

机译:带有Ag基接枝物的磺化聚合物膜:形态,表征,抗菌活性和拦截能力

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摘要

Ag-based nano-graft is a common approach used to impart broad-spectrum antimicrobial activity to a polymer membrane. The primary problem with this approach is low compatibility between the grafted particles and the polymer main-body, followed by its low anti-adhesion for undesired membrane fouling. To overcome these problems, this study functionalized polyethersulfone (PES) materials by a sulfonation process to form the membrane backbone. FTIR, thermogravimetry (TG) and contact angle (CA) analysis showed that sulfonate treatment improved hydrophilicity and surface activity. Accordingly, the Ag-based nano-grafts were embedded on the membrane by immersing into a Ag+ solution and then reducing. The resulting membrane was characterized by a series of assays. SEM and AFM scans were used to examine the membrane surface for Ag nanoparticles (AgNPs) distribution. XRD and XPS analysis determined the AgNPs state. A concentration assay revealed that the Ag release from the membrane was maintained within the safety range during the filtration process. An antimicrobial ring test showed the antimicrobial activities of the membrane for different microbial strains. BET analysis and the water-absorption test analyzed the porosity properties of the membrane. The filtration performance assay proved that the membrane had remarkable interception ability for various solutes. Consequently, it showed that the prepared SPES-AgNPs membrane will have a promising application as an antimicrobial filtration membrane for water treatment.
机译:基于Ag的纳米接枝物是用于赋予聚合物膜广谱抗微生物活性的常用方法。该方法的主要问题是接枝颗粒与聚合物主体之间的相容性低,随后其对于不希望的膜污染的低粘附性。为了克服这些问题,本研究通过磺化工艺将聚醚砜(PES)材料功能化,以形成膜骨架。 FTIR,热重法(TG)和接触角(CA)分析表明,磺酸盐处理可改善亲水性和表面活性。因此,通过浸入Ag + 溶液中然后还原,将基于Ag的纳米接枝物嵌入膜中。通过一系列测定来表征所得的膜。 SEM和AFM扫描用于检查膜表面的Ag纳米颗粒(AgNPs)分布。 XRD和XPS分析确定了AgNPs状态。浓度测定表明,在过滤过程中,从膜中释放的银保持在安全范围内。抗菌环试验显示了膜对不同微生物菌株的抗菌活性。 BET分析和吸水试验分析了膜的孔隙率性质。过滤性能试验证明该膜对各种溶质具有显着的拦截能力。因此,表明所制备的SPES-AgNPs膜作为用于水处理的抗菌过滤膜具有广阔的应用前景。

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