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Yu, Ling; Chen, Yuejiao; Feng, Dandan; Li, Qiuhong, E-mail: yuling1987@yeah.net, E-mail: liqiuhong2004@hotmail.com2013
AbstractAbstract
[en] The structure modification of Co3O4 nano-parachute (i.e., nanosheets with part of nanowires as backbones) grown directly on conducting Ni foam substrates was successfully realized via a facile solution route followed by calcinations. By adjusting [OH−] value, two kinds of (Co(CO3)0.5(OH)0.11H2O) nanostructures (nanoarray and parachute-like) were obtained. Compared with other Co3O4 nanosheets, such nano-parachute not only inherits the advantages of nanosheet but also shows enormous net space between nanobuilding units. A possible formation mechanism for the two structures has been proposed. As anode materials for lithium-ion batteries, this sheet-like morphology on Ni foam exhibited enhanced lithium storage capacity
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Copyright (c) 2013 Springer Science+Business Media Dordrecht; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Journal of Nanoparticle Research; ISSN 1388-0764; ; v. 15(8); p. 1-12
Country of publication
CARBON COMPOUNDS, CHALCOGENIDES, CHARGED PARTICLES, CHEMICAL REACTIONS, COBALT COMPOUNDS, COLLOIDS, DECOMPOSITION, DISPERSIONS, ELECTROCHEMICAL CELLS, ENERGY STORAGE SYSTEMS, ENERGY SYSTEMS, IONS, NANOSTRUCTURES, OXIDES, OXYGEN COMPOUNDS, PYROLYSIS, THERMOCHEMICAL PROCESSES, TRANSITION ELEMENT COMPOUNDS
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