Issue 45, 2017, Issue in Progress

Unique properties of silver and copper silica-based nanocomposites as antimicrobial agents

Abstract

The paper reports a new route for the fabrication and determination of physicochemical properties and biological activity, of metallic silica-based nanostructure (Ag/SiO2, Cu/SiO2). A research studies shows mono-dispersed nanoparticles in silica matrix with an average size of 12 nm for silver, as well as 12 nm and 4 nm, respectively for copper in hydrophobic and hydrophilic silica composites. The chemical analysis highlights metallic silver and copper ions heterogeneously distributed in the composite as well as metallic oxides such as Ag2O, Cu2O and CuO in hydrophobic system, and CuO in hydrophilic one. Structural research evidences the presence of amorphous, stoichiometric and non-stoichiometric crystalline phase of silica. Biological studies reveal potentially inhibition of growth gram-positive and gram-negative bacteria as well as microscopic fungi. The size of metal nanoparticles and level of silica hydrophobicity show the highest inhibition bacterial growth for hydrophilic system with embedding inside them, 4 nm in size copper nanoparticles. Finally, cytotoxic interaction against human cells with respect to silver and copper silica-based nanocomposites was not found.

Graphical abstract: Unique properties of silver and copper silica-based nanocomposites as antimicrobial agents

Article information

Article type
Paper
Submitted
17 Jan 2017
Accepted
10 May 2017
First published
26 May 2017
This article is Open Access
Creative Commons BY license

RSC Adv., 2017,7, 28092-28104

Unique properties of silver and copper silica-based nanocomposites as antimicrobial agents

J. Peszke, M. Dulski, A. Nowak, K. Balin, M. Zubko, S. Sułowicz, B. Nowak, Z. Piotrowska-Seget, E. Talik, M. Wojtyniak, A. Mrozek-Wilczkiewicz, K. Malarz and J. Szade, RSC Adv., 2017, 7, 28092 DOI: 10.1039/C7RA00720E

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