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Study of Biological Activity of Conducting Poly(N-Ethylaniline) Nanoparticles Doped with Organic Acid

机译:掺杂有机酸的导电聚(N-乙基苯胺)纳米粒子的生物活性研究

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A novel green approach by photocatalytic oxidative polymerization was developed that addresses and resolves current limitations of chemical polymerization of anilines. This process generates nanoparticles of the conducting polymer poly(N-ethylanilinc) (PNETA) and poly-(N-mefhylaniline) (PNMTA) in a single step by using a catalytic amount of the oxidant in the presence of an organic acid such as DL-(±)-Tartaric acid. Poly(N-ethylaniline) nanoparticles doped with tartaric acid show exceptional antimicrobial activity at low concentration. Five compounds have been synthesized. Of these, two compounds have been found to exhibit significant activity against Klebsiella pneumoniae. The minimum inhibitory concentration value was observed at 50 ng/mL. An extremely simple green approach is described that generates bulk quantities of nanoparticles with average diameter 200 nm size of the conducting polymer PNETA in one-step photochemical method using a catalytic amount of ammonium persulfate as oxidant in the presence of organic acid dopant, DL-(±)-Tartaric acid. The resultant polymer were characterized by UV-visible, FTIR, XRD, and SEM analysis and their antibacterial activity against Klebsiella pneumoniae has been studied. These polymer nanomaterials show a prominent antimicrobial activity against the tested bacteria and therefore have potential applications in biomedical sciences.
机译:开发了一种通过光催化氧化聚合反应的新型绿色方法,该方法解决并解决了苯胺化学聚合反应的当前限制。该方法通过在有机酸(例如DL)存在下使用催化量的氧化剂,一步一步生成导电聚合物聚(N-乙基苯胺基)(PNETA)和聚(N-甲基苯胺基)(PNMTA)的纳米颗粒。 -(±)-酒石酸。酒石酸掺杂的聚(N-乙基苯胺)纳米颗粒在低浓度下显示出卓越的抗菌活性。已经合成了五种化合物。其中,发现两种化合物对肺炎克雷伯菌具有显着活性。观察到最小抑菌浓度值为50 ng / mL。描述了一种极其简单的绿色方法,该方法在有机酸掺杂剂DL-(存在)下使用催化量的过硫酸铵作为氧化剂,通过一步光化学方法在一步光化学方法中生成大量平均直径为200 nm的导电聚合物PNETA的纳米颗粒。 ±)-酒石酸。通过紫外可见光,FTIR,XRD和SEM分析对所得聚合物进行表征,并研究了其对肺炎克雷伯菌的抗菌活性。这些聚合物纳米材料对被测细菌表现出显着的抗菌活性,因此在生物医学领域具有潜在的应用。

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