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Chinese Science Bulletin

, Volume 57, Issue31, pp 40194023

First Online: 27 October 2012Received: 07 March 2012Accepted: 23 May 2012DOI: 10.1007-s11434-012-5363-0

Cite this article as: Ma, M., Pan, Z., Guo, L.
et al.
Chin.
Sci.
Bull.
2012 57: 4019.
doi:10.1007-s11434-012-5363-0

Abstract

The porous Co3O4 nanowires have been successfully synthesized via modified template method.
A possible growth mechanism governing the formation of such 1D nanowires is proposed.
The as-prepared products have been characterized by X-ray Powder Diffraction XRD, Extended X-ray Absorption Fine-structure EXAFS, High-resolution Transmission Electron Microscopy HRTEM and N2 adsorption-desorption analysis.
Our systematic studies have revealed that the porous Co3O4 nanowires show excellent gas sensing performances, which demonstrate the potential application of the 1D nanostructured Co3O4 in the detection of the ethanol gas as a sensor material.
The improved performances are owing to its large specific surface area and porous morphology.

Keywordsnanostructurescobalt oxidesXAFSgas sensorsThis article is published with open access at Springerlink.com

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Autor: MaiXiaMa - ZhiYunPan - LinGuo - JingHongLi - ZiYuWu - ShiHeYang

Fuente: https://link.springer.com/



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