Article ID Journal Published Year Pages File Type
10567492 Journal of Power Sources 2011 5 Pages PDF
Abstract
► We report a facile synthesis of a 'graphene'-SnO2 composite by homogeneous coprecipitation. ► SnO2 nanoparticles are decorated uniformaly on the surface of reduced graphene oxide platlets. ► As an anode material for Li-ion battery, the RG-O/SnO2 composite exhibits discharge and charge capacities of 2140 and 1080 mAh/g at the first cycle, respectively, with good cycling performance. ► The synthesis approach presents a promising route for large scale production of RG-O platelet/metal oxide nanoparticle composites as electrode materials.
Related Topics
Physical Sciences and Engineering Chemistry Electrochemistry
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