Issue 47, 2013

Functional noble metal nanostructures involving pyrene-conjugated-hyaluronan stabilised reduced graphene oxide

Abstract

Pyrene-conjugated-hyaluronan (Py–HA) stabilises reduced graphene oxide (Py–HA–RGO) in water, with the composite material providing a substrate for building up nanostructures of Au, Ag, Pd and Pt, of varying sizes, shape, and surface properties. Formation of the metal is effective using in situ UV irradiation (Au and Ag) or hydrogen gas at ambient pressure (Pd and Pt). The Py–HA is multifunctional in stabilising Py–HA–RGO in water and controlling the nature of the resulting metal nanostructures. The hybrid Au nanomaterials have been tested as a sensor material for hydrogen peroxide, using electrocatalysis, and the Pd nanomaterials are readily incorporated into hydrogen gas sensors using a drop casting technique, with both systems having nanostructured-dependent detecting responses.

Graphical abstract: Functional noble metal nanostructures involving pyrene-conjugated-hyaluronan stabilised reduced graphene oxide

Supplementary files

Article information

Article type
Paper
Submitted
12 Sep 2013
Accepted
10 Oct 2013
First published
14 Oct 2013

RSC Adv., 2013,3, 25166-25174

Functional noble metal nanostructures involving pyrene-conjugated-hyaluronan stabilised reduced graphene oxide

F. Zhang, F. Md Yasin, X. Chen, J. Mo, C. L. Raston and H. Zhang, RSC Adv., 2013, 3, 25166 DOI: 10.1039/C3RA45037F

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