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3D reduced graphene oxide coated V2O5 nanoribbon scaffolds for high-capacity supercapacitor electrodes

3D reduced graphene oxide coated V2O5 nanoribbon scaffolds for high-capacity supercapacitor electrodes

Gonglan Ye, Yongji Gong, Kunttal Keyshar, Esam A. M. Husain, Gustavo Brunetto, Shubin Yang, Robert Vajtai, Pulickel M. Ajayan

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[Three D reduced graphene oxide coated V2O5 nanoribbon scaffolds for high-capacity supercapacitor electrodes]

Agradecimentos: G.Y. and Y.G. contributed equally to this work. This work was financially supported by US Army Research Office through a MURI Grant No. (W911NF-11-1-0362) on Novel Free-Standing 2D Crystalline Materials, titled "Atomic layers of Nitrides, Oxides, and Sulfides" and U.S Air Force... Ver mais
Abstract: 3D architecture V2O5 nanoribbon/reduced graphene oxide is successfully fabricated as an electrode material for supercapacitors. In combination with the advantages from the good rate performance of carbon-based materials and the high specific capacitance of metal oxides, as well as its 3D... Ver mais

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3D reduced graphene oxide coated V2O5 nanoribbon scaffolds for high-capacity supercapacitor electrodes

Gonglan Ye, Yongji Gong, Kunttal Keyshar, Esam A. M. Husain, Gustavo Brunetto, Shubin Yang, Robert Vajtai, Pulickel M. Ajayan

										

3D reduced graphene oxide coated V2O5 nanoribbon scaffolds for high-capacity supercapacitor electrodes

Gonglan Ye, Yongji Gong, Kunttal Keyshar, Esam A. M. Husain, Gustavo Brunetto, Shubin Yang, Robert Vajtai, Pulickel M. Ajayan

    Fontes

    Particle & particle systems characterization. An international journal devoted to the measure and description of particle and bulk properties in dispersed systems (Fonte avulsa)