Issue 21, 2016

Catalyst-free synthesis of a three-dimensional nanoworm-like gallium oxide–graphene nanosheet hybrid structure with enhanced optical properties

Abstract

We here report the synthesis and growth of catalyst-free three-dimensional β-gallium oxide nanoworm-like nanostructures on graphene nanosheets (3D β-Ga2O3@GNSs) using a solid mixture of graphite oxide and gallium acetylacetonate by the microwave (MW)-assisted method for the first time. The MW-assisted synthesis of the 3D β-Ga2O3@GNSs hybrids contains 1D semiconducting β-Ga2O3 nanoworms (NWs) and 2D highly conducting graphene nanosheets (GNSs) materials. The β-Ga2O3 NWs have an average diameter of 200 nm and lengths of up to ∼1 μm grown on the GNSs. These 3D β-Ga2O3@GNSs hybrids have been synthesized in a very short time with scalable amounts. The controlling parameters such as MW irradiation time and power were found to greatly influence the structural morphology of the as-synthesized 3D β-Ga2O3@GNSs hybrid. This method for the synthesis of 3D β-Ga2O3@GNSs hybrids is imperative due to it allowing excellent control over experimental parameters, being low cost and having better reproducibility. Also, the catalyst-free MW-assisted method is a much more rapid and thus higher throughput alternative for effective and scalable growth over the conventional heating method. The crystallinity, structure, morphology, and optical analysis of the 3D β-Ga2O3@GNSs hybrids are carried out utilizing several techniques. The formation of the 3D β-Ga2O3@GNSs hybrids shows a band gap variation from 4.94 to 4.48 eV associated with the structural evolution. A suitable growth mechanism has been suggested for the formation of these 3D β-Ga2O3@GNSs hybrids.

Graphical abstract: Catalyst-free synthesis of a three-dimensional nanoworm-like gallium oxide–graphene nanosheet hybrid structure with enhanced optical properties

Article information

Article type
Paper
Submitted
20 Nov 2015
Accepted
20 Jan 2016
First published
26 Jan 2016

RSC Adv., 2016,6, 17669-17677

Author version available

Catalyst-free synthesis of a three-dimensional nanoworm-like gallium oxide–graphene nanosheet hybrid structure with enhanced optical properties

R. Kumar, P. K. Dubey, R. K. Singh, A. R. Vaz and S. A. Moshkalev, RSC Adv., 2016, 6, 17669 DOI: 10.1039/C5RA24577J

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