Issue 7, 2018, Issue in Progress

Synthesis and antimicrobial effects of highly dispersed, cellulose-stabilized silver/cellulose nanocomposites

Abstract

Small, spherical silver nanoclusters were synthesised on the surface of paper as a model cellulosic fibre substrate by a standard chemical reduction method. The concentration of the silver nanoclusters on the substrate surface is roughly proportional to the initial silver salt concentration. However, there is a noticeable degree of nanocluster aggregation to larger agglomerates. The addition of small amounts of α-cellulose, carboxymethyl cellulose or aminocellulose during the synthesis of the silver/cellulose nanocomposites suppresses this aggregation and significantly increases the concentration of the silver nanoclusters on the surface of the fibres of cellulose. These small, surface-stabilised silver nanoclusters, with the desired size and morphology, deposited from aqueous solutions on the surface of cellulosic cotton fibres, show enhanced antibacterial activity against MRSA compared to that of the corresponding silver/cotton nanocomposites prepared in the absence of a cellulosic surface stabiliser.

Graphical abstract: Synthesis and antimicrobial effects of highly dispersed, cellulose-stabilized silver/cellulose nanocomposites

Article information

Article type
Paper
Submitted
09 Nov 2017
Accepted
26 Dec 2017
First published
18 Jan 2018
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2018,8, 3646-3656

Synthesis and antimicrobial effects of highly dispersed, cellulose-stabilized silver/cellulose nanocomposites

N. S. Alahmadi, J. W. Betts, T. Heinze, S. M. Kelly, A. Koschella and J. D. Wadhawan, RSC Adv., 2018, 8, 3646 DOI: 10.1039/C7RA12280B

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