Journal article

Facile electrochemical approach for the production of graphite oxide with tunable chemistry

Z Tian, P Yu, SE Lowe, AG Pandolfo, TR Gengenbach, KM Nairn, J Song, X Wang, YL Zhong, D Li

Carbon | PERGAMON-ELSEVIER SCIENCE LTD | Published : 2017

Abstract

Reproducible and in-depth studies of the electrochemical graphite intercalation and oxidation processes were carried out with the use of an electrochemical Tee-cell setup. The electrochemical method allowed simpler and greater controllability over the level of oxidation/functionalization, relative to the commonly employed chemical oxidation approach (e.g. the modified Hummers method). Extensive characterization was carried out to understand the properties of the electrochemically-derived graphite oxide (EGrO), and it was found that the abundance of each functionality was highly dependent on the electrochemical reaction time or the concentration of the electrolyte (perchloric acid) employed. ..

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University of Melbourne Researchers

Grants

Awarded by Australian Research Council


Funding Acknowledgements

The authors acknowledge funding support from Baosteel-Australia Joint Research and Development Centre (BA11006) and the Australian Research Council (DE 140101662). This work made use of the facilities at the Monash Centre for Electron Microscopy and Monash X-ray platform.