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Ag/AgO Nanoparticles Grown via Time Dependent Double Mechanism in a 2D Layered Ni-PCP and Their Antibacterial Efficacy

机译:通过二维二维Ni-PCP的时变双机理生长的Ag / AgO纳米颗粒及其抗菌功效

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摘要

A simple synthesis route for growth of Ag/AgO nanoparticles (NPs) in large quantitative yields with narrow size distribution from a functional, non-activated, Ni (II) based highly flexible porous coordination polymer (PCP) as a template has been demonstrated. This template is a stable storage media for the NPs larger than the pore diameters of the PCP. From EPR study it was concluded that NPs were synthesized via two mechanisms i.e. acid formation and the redox activity of the framework. Size range of Ag/AgO NPs is sensitive to choice of solvent and reaction time. Direct use of Ag/AgO@Ni-PCP shows influential growth inhibition towards Escherichia coli and the pathogen Salmonella typhimurium at extremely low concentrations. The pristine template shows no cytotoxic activity, even though it contains Ni nodes in the framework.
机译:已经证明了以功能性,未活化的,基于镍(II)的高柔性多孔配位聚合物(PCP)为模板,以大的定量收率和窄尺寸分布来生长Ag / AgO纳米颗粒(NP)的简单合成路线。该模板是大于PCP孔径的NP的稳定存储介质。从EPR研究可以得出结论,NPs是通过两种机制合成的,即酸形成和骨架的氧化还原活性。 Ag / AgO NP的大小范围对溶剂的选择和反应时间很敏感。直接使用Ag / AgO @ Ni-PCP对极低浓度的大肠杆菌和鼠伤寒沙门氏菌具有影响性的生长抑制作用。原始模板即使在框架中包含Ni节点,也没有细胞毒性。

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