A new type of graphene-based FeOX nanocomposites have been synthesized by high temperature solidstate reaction using FeC2O4$ 2H(2)O. The synthesis conditions are optimized by thermogravimetric analysis of the precursor. When evaluated as anode material for the alkaline nickel-iron battery, the FeOxgraphene nanocomposites deliver a high specific capacity of 552.1 mA h g (-1) at a current density of 200 mA g(-1) and retain 91% of the initial capacity after 100 cycles. Furthermore, the hybridized FeOxgraphene materials undergo only 26% capacity decay when the discharge current density is changed from 200 mA g(-1) to 1000 mA g (-1) The enhanced cycling and high discharge rate performance derives from the high specific surface area of iron oxide...
Iron oxides are considered promising electrode materials owing to their capability of lithium storag...
Composite anode material based on Fe3O4 and reduced graphene oxide is prepared by base-catalysed co-...
AbstractRecently, metal oxides as high capacity anode materials had been investigated for lithium io...
Fe3O4-graphene nanocomposite was prepared by a gas/liquid interface reaction. The structure and morp...
A facile single step solvothermal route has been developed to prepare a composite of Fe O nanopartic...
A facile single step solvothermal route has been developed to prepare a composite of Fe3O4 nanoparti...
This thesis reports on the development and evaluation of the performance of a nanostructured electro...
A facile one pot hydrothermal method has been developed to synthesize laminate-structured graphene s...
Iron oxides are considered promising electrode materials owing to their capability of lithium storag...
This study develops a facile and effective methodology to synthesize carbon-coated Fe3O4/graphene co...
International audienceUsing hydrothermal method, Fe3O4/graphene nanocomposite is prepared by synthes...
International audienceUsing hydrothermal method, Fe3O4/graphene nanocomposite is prepared by synthes...
A well-organized flexible interleaved composite of graphene nanosheets (GNSs) decorated with Fe3O4 p...
Graphene/metal oxide composites have attracted considerable attention for various applications, such...
Composite anode material based on Fe3O4 and reduced graphene oxide is prepared by base-catalysed co-...
Iron oxides are considered promising electrode materials owing to their capability of lithium storag...
Composite anode material based on Fe3O4 and reduced graphene oxide is prepared by base-catalysed co-...
AbstractRecently, metal oxides as high capacity anode materials had been investigated for lithium io...
Fe3O4-graphene nanocomposite was prepared by a gas/liquid interface reaction. The structure and morp...
A facile single step solvothermal route has been developed to prepare a composite of Fe O nanopartic...
A facile single step solvothermal route has been developed to prepare a composite of Fe3O4 nanoparti...
This thesis reports on the development and evaluation of the performance of a nanostructured electro...
A facile one pot hydrothermal method has been developed to synthesize laminate-structured graphene s...
Iron oxides are considered promising electrode materials owing to their capability of lithium storag...
This study develops a facile and effective methodology to synthesize carbon-coated Fe3O4/graphene co...
International audienceUsing hydrothermal method, Fe3O4/graphene nanocomposite is prepared by synthes...
International audienceUsing hydrothermal method, Fe3O4/graphene nanocomposite is prepared by synthes...
A well-organized flexible interleaved composite of graphene nanosheets (GNSs) decorated with Fe3O4 p...
Graphene/metal oxide composites have attracted considerable attention for various applications, such...
Composite anode material based on Fe3O4 and reduced graphene oxide is prepared by base-catalysed co-...
Iron oxides are considered promising electrode materials owing to their capability of lithium storag...
Composite anode material based on Fe3O4 and reduced graphene oxide is prepared by base-catalysed co-...
AbstractRecently, metal oxides as high capacity anode materials had been investigated for lithium io...