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嵌入聚乙烯基甲基酮薄膜中的银和铜纳米颗粒的合成、分析表征及生物活性

Synthesis, analytical characterization and bioactivity of Ag and Cu nanoparticles embedded in poly-vinyl-methyl-ketone films.

作者信息

Cioffi N, Ditaranto N, Torsi L, Picca R A, De Giglio E, Sabbatini L, Novello L, Tantillo G, Bleve-Zacheo T, Zambonin P G

机构信息

Dipartimento di Chimica, Università degli Studi di Bari, via Orabona 4, 70126 Bari, Italy.

出版信息

Anal Bioanal Chem. 2005 Aug;382(8):1912-8. doi: 10.1007/s00216-005-3334-x. Epub 2005 Jul 20.

Abstract

The electrosynthesis of copper and silver core-shell nanoparticles (NPs) by the sacrificial anode technique, employing tetraoctylammonium (TOA) salts as base electrolyte for the first time, is described. These surfactants were selected because they combine high NP stabilizing power with useful disinfecting properties. The resulting colloids were mixed with a solution of an inert dispersing polymer and used to prepare nanostructured composite thin films. The morphologies and chemical compositions of the nanomaterials were characterized by Transmission Electron Microscopy (TEM) and X-ray Photoelectron Spectroscopy (XPS). The TEM reveals that the average core diameter of the metal NPs ranges between 1.7 and 6.3 nm, as a function of the nature of the metal and of the electrosynthesis conditions, and does not change significantly upon inclusion in the polymer matrix. An appreciable concentration of the metal is detected on the nanoparticle surface by XPS. High-resolution XP spectra indicate that both copper and silver are present at zero oxidation state in all of the materials (colloids and composite films). This demonstrates the high efficiency of the surfactant at controlling the morphology and the chemical composition of the nanodispersed metal in both the as-synthesized colloid and in the polymeric dispersion. The nanocoatings are shown to exert a marked inhibitory effect on the growth of eukaryote and prokaryote target microrganisms, and experimental evidence of a synergic disinfecting effect due to the surfactant and the nanodispersed metal is provided. On the basis of these stability and bioactivity results, it is clear that Cu-NPs and Ag-NPs are suitable for application in disinfecting or antifouling paint and coating formulations.

摘要

首次描述了通过牺牲阳极技术电合成铜和银核壳纳米颗粒(NP),使用四辛基铵(TOA)盐作为基础电解质。选择这些表面活性剂是因为它们兼具高NP稳定能力和有用的消毒特性。将所得胶体与惰性分散聚合物溶液混合,并用于制备纳米结构复合薄膜。通过透射电子显微镜(TEM)和X射线光电子能谱(XPS)对纳米材料的形态和化学成分进行了表征。TEM显示,金属NP的平均核直径在1.7至6.3nm之间,这是金属性质和电合成条件的函数,并且在包含于聚合物基质中时不会显著变化。通过XPS在纳米颗粒表面检测到相当浓度的金属。高分辨率XP光谱表明,在所有材料(胶体和复合薄膜)中,铜和银均以零氧化态存在。这证明了表面活性剂在控制合成胶体和聚合物分散体中纳米分散金属的形态和化学成分方面的高效率。纳米涂层对真核和原核目标微生物的生长具有显著的抑制作用,并提供了表面活性剂和纳米分散金属协同消毒作用的实验证据。基于这些稳定性和生物活性结果,很明显Cu-NP和Ag-NP适用于消毒或防污涂料和涂层配方。

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