One-pot solvothermal process is adopted to develop, 3D hierarchical Fe3O4 nanoparticles supported 2D reduced graphene oxide sheets (Fe3O4/r-GO) as possible negative electrodes for lithium ion batteries. The synthesis parameters are optimized to prepare agglomeration-free Fe3O4 nanostructures with uniform size and shape on r- GO. The field emission scanning electron microscopic (FESEM) image reveals that the 3D hierarchical Fe3O4 nanostructures are uniformly decorated on r-GO. The physicochemical and functional properties of Fe3O4/r-GO are systematically investigated using various techniques. The fabricated Fe3O4/r-GO electrode delivers an initial discharge capacity of 1221 mAh g−1 at a current density of 100 mA g−1 and retains the specific ...
AbstractRecently, metal oxides as high capacity anode materials had been investigated for lithium io...
A well-organized flexible interleaved composite of graphene nanosheets (GNSs) decorated with Fe3O4 p...
A simple approach to synthesizing γ-FeO nanoparticles encapsulated by reduced graphene oxide (RGO) s...
International audienceUsing hydrothermal method, Fe3O4/graphene nanocomposite is prepared by synthes...
A facile one pot hydrothermal method has been developed to synthesize laminate-structured graphene s...
International audienceFe3–xO4 raspberry shaped nanostructures/graphene nanocomposites were synthesiz...
Iron oxides are considered promising electrode materials owing to their capability of lithium storag...
The development of electrode materials capable of delivering high electrochemical performance is a...
A facile and straightforward method has been developed to synthesize laminated-structured Fe3O4/grap...
Iron oxides are considered promising electrode materials owing to their capability of lithium storag...
Fe3O4-graphene nanocomposite was prepared by a gas/liquid interface reaction. The structure and morp...
This study develops a facile and effective methodology to synthesize carbon-coated Fe3O4/graphene co...
Transition metal oxide coupling with carbon is an effective method for improving electrical conducti...
This study examines the synthesis and electrochemical performance of three-dimensional graphene for ...
265-273A simple one-pot hydrothermal approach is employed for the fabrication of Fe3O4/reduced grap...
AbstractRecently, metal oxides as high capacity anode materials had been investigated for lithium io...
A well-organized flexible interleaved composite of graphene nanosheets (GNSs) decorated with Fe3O4 p...
A simple approach to synthesizing γ-FeO nanoparticles encapsulated by reduced graphene oxide (RGO) s...
International audienceUsing hydrothermal method, Fe3O4/graphene nanocomposite is prepared by synthes...
A facile one pot hydrothermal method has been developed to synthesize laminate-structured graphene s...
International audienceFe3–xO4 raspberry shaped nanostructures/graphene nanocomposites were synthesiz...
Iron oxides are considered promising electrode materials owing to their capability of lithium storag...
The development of electrode materials capable of delivering high electrochemical performance is a...
A facile and straightforward method has been developed to synthesize laminated-structured Fe3O4/grap...
Iron oxides are considered promising electrode materials owing to their capability of lithium storag...
Fe3O4-graphene nanocomposite was prepared by a gas/liquid interface reaction. The structure and morp...
This study develops a facile and effective methodology to synthesize carbon-coated Fe3O4/graphene co...
Transition metal oxide coupling with carbon is an effective method for improving electrical conducti...
This study examines the synthesis and electrochemical performance of three-dimensional graphene for ...
265-273A simple one-pot hydrothermal approach is employed for the fabrication of Fe3O4/reduced grap...
AbstractRecently, metal oxides as high capacity anode materials had been investigated for lithium io...
A well-organized flexible interleaved composite of graphene nanosheets (GNSs) decorated with Fe3O4 p...
A simple approach to synthesizing γ-FeO nanoparticles encapsulated by reduced graphene oxide (RGO) s...