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首页> 外文期刊>ACS applied materials & interfaces >One-Step Synthesis and Characterization of Polyaniline Nanofiber/Silver Nanoparticle Composite Networks as Antibacterial Agents
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One-Step Synthesis and Characterization of Polyaniline Nanofiber/Silver Nanoparticle Composite Networks as Antibacterial Agents

机译:抗菌剂聚苯胺纳米纤维/银纳米颗粒复合网络的一步合成与表征

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摘要

Through a facile and effective seeding polymerization reaction via a one-step redox/complexation process, which took place in aqueous medium at ambient temperature, silver nanoparticles (Ag NPs) embedded polyaniline nanofiber (PANI NF) networks were synthesized as antibacterial agents. During the reaction, not only NF morphology formation of the resulting conducting polymers (CPs) but also amplification of the aqueous silver nitrate (AgNO3) solutions oxidative potentials were managed by vanadium pentoxide (V2O5) solgel nanofibers, which acted as well-known nanofibrous seeding agents and the auxiliary oxidative agent at the same time. The PANI/Ag nanocomposites were proven to exhibit excellent antibacterial property against both Gram-negative Escherichia coli and Gram-positive Staphylococcus aureus. Antibacterial property performance and average life span of the nanocomposite network were optimized through the homogeneous distribution/embedment of Ag NPs within one-dimensional (1-D) PANI NF matrix. The antibacterial efficacy tests and nanocomposite material characterization results further indicated that the sole components of PANI/Ag have a synergistic effect to each other in terms of antibacterial property. Thus, this well-known catalytic seeding approach via a one-step oxidative polymerization reaction can be considered as a general methodology and a substantial fabrication tool to synthesize Ag NP decorated nanofibrillar PANI networks as advanced antibacterial agents.
机译:通过在室温下在水性介质中进行的一步氧化还原/络合过程的简便,有效的接种聚合反应,合成了银纳米颗粒(Ag NPs)嵌入的聚苯胺纳米纤维(PANI NF)网络作为抗菌剂。在反应过程中,不仅通过形成的导电聚合物(CP)形成了NF形态,而且通过五氧化二钒(V2O5)溶胶凝胶纳米纤维控制了硝酸银水溶液(AgNO3)的氧化电位,这是众所周知的纳米纤维种子剂和辅助氧化剂同时使用。事实证明,PANI / Ag纳米复合材料对革兰氏阴性大肠杆菌和革兰氏阳性金黄色葡萄球菌均具有优异的抗菌性能。通过一维(1-D)PANI NF基质中Ag NP的均匀分布/嵌入,优化了纳米复合网络的抗菌性能和平均寿命。抗菌功效测试和纳米复合材料的表征结果进一步表明,PANI / Ag的唯一组分在抗菌性能方面具有协同作用。因此,这种众所周知的通过一步氧化聚合反应的催化接种方法可以被视为一种通用的方法和一种合成Ag NP修饰的纳米原纤维PANI网络作为先进抗菌剂的重要制造工具。

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