Oxidation stability of nanographite materials

Li, Huaiguang, Cheng, Niancai, Zheng, Yao, Zhang, Xiao, Lv, Haifeng, He, Daping, Pan, Mu, Kleitz, Freddy, Qiao, Shi Zhang and Mu, Shichun (2013) Oxidation stability of nanographite materials. Advanced Energy Materials, 3 9: 1176-1179. doi:10.1002/aenm.201300177


Author Li, Huaiguang
Cheng, Niancai
Zheng, Yao
Zhang, Xiao
Lv, Haifeng
He, Daping
Pan, Mu
Kleitz, Freddy
Qiao, Shi Zhang
Mu, Shichun
Title Oxidation stability of nanographite materials
Journal name Advanced Energy Materials   Check publisher's open access policy
ISSN 1614-6832
1614-6840
Publication date 2013
Sub-type Article (original research)
DOI 10.1002/aenm.201300177
Open Access Status
Volume 3
Issue 9
Start page 1176
End page 1179
Total pages 4
Place of publication Weinheim, Germany
Publisher Wiley - V C H
Language eng
Abstract Nanographite materials (NGMs), e.g., carbon nanotubes and graphene, have attracted great attention owing to their unique electronic and structural properties which make them promising for applications in Li-ion batteries, [ 1 ] functional composites, [ 2 ] fuel cells, [ 3 ] supercapacitors, [ 4 ] nano-electromechanical systems [ 5 ] and photovoltaic devices. [ 6 ] However, when NGMs are used as supports of catalysts or active components in electrochemical devices (such as fuel cells), their oxidation and corrosion could lead to a severe degradation of the catalyst which eventually affects the whole performance of the electrochemical systems. Therefore, understanding the oxidation stability of NGMs is essential in order to develop new robust nanoscale devices.
Q-Index Code C1
Q-Index Status Provisional Code
Institutional Status Non-UQ

Document type: Journal Article
Sub-type: Article (original research)
Collection: Australian Institute for Bioengineering and Nanotechnology Publications
 
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Created: Fri, 08 Aug 2014, 18:24:56 EST by System User on behalf of Aust Institute for Bioengineering & Nanotechnology