Nanosized silver-anionic clay matrix as nanostructured ensembles with antimicrobial activity.

Int J Antimicrob Agents

Department of Chemical Engineering, Faculty of Chemical Engineering and Environment Protection, Technical University Gh Asachi of Iasi, Bd D Mangeron, Iasi, Romania.

Published: December 2009

Nanostructured ensembles of silver nanoparticles/zinc-substituted anionic clay matrix (Ag/ZnLDH) were obtained by a simple synthetic route in which reconstruction of the layered clay, synthesis of the silver nanoparticles and their organisation on the clay surface took place in a single step at room temperature. The morphology, composition and phase structure of the prepared powders were characterised by X-ray diffraction, infrared spectroscopy, transmission electron microscopy, X-ray photoelectron spectroscopy and N(2) adsorption. Results showed that the silver-anionic clay nanoarchitecture consists of nanoparticles of silver (average size 7 nm) deposited on the larger nanoparticles of clay (average size 85 nm). The antimicrobial activity was examined by disk diffusion assay and minimal inhibitory concentration determination as a function of x, where x is a controlled variable parameter that represents the length of time since the sample was synthesised. Ag/ZnLDH showed more stable antimicrobial properties than the unsupported nanosized silver.

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http://dx.doi.org/10.1016/j.ijantimicag.2009.08.008DOI Listing

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Nanosized silver-anionic clay matrix as nanostructured ensembles with antimicrobial activity.

Int J Antimicrob Agents

December 2009

Department of Chemical Engineering, Faculty of Chemical Engineering and Environment Protection, Technical University Gh Asachi of Iasi, Bd D Mangeron, Iasi, Romania.

Nanostructured ensembles of silver nanoparticles/zinc-substituted anionic clay matrix (Ag/ZnLDH) were obtained by a simple synthetic route in which reconstruction of the layered clay, synthesis of the silver nanoparticles and their organisation on the clay surface took place in a single step at room temperature. The morphology, composition and phase structure of the prepared powders were characterised by X-ray diffraction, infrared spectroscopy, transmission electron microscopy, X-ray photoelectron spectroscopy and N(2) adsorption. Results showed that the silver-anionic clay nanoarchitecture consists of nanoparticles of silver (average size 7 nm) deposited on the larger nanoparticles of clay (average size 85 nm).

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