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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Enhanced antimicrobial, anti-oxidant applications of green synthesized AgNPs- an acute chronic toxicity study of phenolic azo dyes & study of materials surface using X-ray photoelectron spectroscopy
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Enhanced antimicrobial, anti-oxidant applications of green synthesized AgNPs- an acute chronic toxicity study of phenolic azo dyes & study of materials surface using X-ray photoelectron spectroscopy

机译:增强的抗微生物,抗氧化剂的绿色合成AgNPS-一种磷酸偶氮染料的急性慢性毒性研究和使用X射线光电子谱研究的材料表面研究

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摘要

The drug resistant bacteria and textile contaminations of water cause different sever health problem throughout the world. To overcome this issue, new environmental benign materials and methods are needed. Plant metabolites directed synthesis of nanoparticles is considered eco-friendly and easy in synthesis. Therefore, it was explicit for the synthesis of AgNPs. The prepared AgNPs were evaluated for antibacterial, antioxidant, photo catalytic and electrochemical degradation properties as well as toxicity of degradation products on aquatic life. X-Ray Photoelectron Spectroscopy (XPS) has been used for analyzing the surface chemistry of prepared AgNPs. The particle size determines the interaction of nanoparticles with pathogens. Both Gram positive and negative bacteria (Escherichia coli and Staphylococcus areous) are used to determine the anti-microbial potency of the green synthesized AgNPs. The synthesized silver nanoparticles showed significant anti-bacterial applications against B. subtilus and S. aureus. The anti-oxidant applications of AgNPs also studied on comparison with vitamin C. The toxicity of the phenolic Azo dyes (PDA) has been studied against Fish, Daphnia and Green Algae. The electrode potential was studied in the electrochemical redox reaction of hydroxy phenol in aqueous media. Simple electrolyte was used to determine the current efficiency. For the stability of electrode multi cyclic voltammetry was also studied during redox reaction, which showed stability under the potential 0.4 to 0.2 V.
机译:耐药细菌和纺织污染的水造成世界各地不同的切断健康问题。为了克服这个问题,需要新的环境良性材料和方法。植物代谢物导致纳米颗粒的合成被认为是生态友好且易于合成的。因此,它是明确的agnps的合成。评价制备的AgNP,用于抗菌,抗氧化剂,光催化和电化学降解特性以及降解产物对水生寿命的毒性。 X射线光电子体光谱(XPS)已被用于分析制备的AgNP的表面化学。粒度决定了纳米颗粒与病原体的相互作用。克阳性和阴性细菌(大肠杆菌和金葡萄球菌)都用于确定绿色合成agnps的抗微生物效力。合成的银纳米粒子显示出对B.枯草植物和金黄色葡萄球菌的显着抗菌应用。 AGNP的抗氧化剂应用还与维生素C进行了研究。酚类偶氮染料(PDA)的毒性已经研究了鱼,Daphnia和绿藻。在含水介质中的羟基苯酚的电化学氧化还原反应中研究了电极电位。简单的电解质用于确定电流效率。对于电极的稳定性,在氧化还原反应过程中还研究了多循环伏安法,其显示在电位下的稳定性0.4至0.2V。

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