Arrays of CuO nanostructures, including nanorods and nanosheets, supported on a Cu substrate have been rationally fabricated from their morphology-controlled Cu(2)(OH)(3)NO(3) precursors by thermal annealing. The as-prepared CuO samples can be directly used as integrated electrodes for lithium-ion batteries without the addition of other ancillary materials such as carbon black or a binder to enhance electrode conductivity and cycling stability. The unique nanostructural features endower them excellent electrochemical performance as demonstrated by high capacities of 450-650 mAh g(-1) at 0.5-2 C and almost 100% capacity retention over 100 cycles after the second cycle
CuO powders composed of different rod-like clusters or dandelion-like nanospheres are prepared by a ...
High-density CuCo2O4 nanosheets are grown on Ni foam using electrodeposition followed by air anneali...
Metal oxide and nanocarbon heterostructures provide a powerful strategy to materials innovation beca...
ABSTRACT: Nanostructured CuO anode materials with controllable morphologies have been successfully s...
Rational design/fabrication of integrated porous metal oxide arrays is critical for the constructio...
We demonstrated an efficient room-temperature chemical transformation route to CuO nanowires (NWs), ...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
Nanostructured CuO anode materials with controllable morphologies have been successfully synthesized...
A rational integration of 1D metallic nanotubes and oxide nanoparticles has been demonstrated as a v...
Staying connected: Robust and interconnected CuO nanotube anodes were fabricated by a thermal oxidat...
Staying connected: Robust and interconnected CuO nanotube anodes were fabricated by a thermal oxidat...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
Twist-shaped CuO nanowires were synthesized by two-step method consisting of solution reaction and t...
CuO is an attractive anode material for Li-ion batteries because of its high specific capacity. Howe...
CuO is an attractive anode material for Li-ion batteries because of its high specific capacity. Howe...
CuO powders composed of different rod-like clusters or dandelion-like nanospheres are prepared by a ...
High-density CuCo2O4 nanosheets are grown on Ni foam using electrodeposition followed by air anneali...
Metal oxide and nanocarbon heterostructures provide a powerful strategy to materials innovation beca...
ABSTRACT: Nanostructured CuO anode materials with controllable morphologies have been successfully s...
Rational design/fabrication of integrated porous metal oxide arrays is critical for the constructio...
We demonstrated an efficient room-temperature chemical transformation route to CuO nanowires (NWs), ...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
Nanostructured CuO anode materials with controllable morphologies have been successfully synthesized...
A rational integration of 1D metallic nanotubes and oxide nanoparticles has been demonstrated as a v...
Staying connected: Robust and interconnected CuO nanotube anodes were fabricated by a thermal oxidat...
Staying connected: Robust and interconnected CuO nanotube anodes were fabricated by a thermal oxidat...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
Twist-shaped CuO nanowires were synthesized by two-step method consisting of solution reaction and t...
CuO is an attractive anode material for Li-ion batteries because of its high specific capacity. Howe...
CuO is an attractive anode material for Li-ion batteries because of its high specific capacity. Howe...
CuO powders composed of different rod-like clusters or dandelion-like nanospheres are prepared by a ...
High-density CuCo2O4 nanosheets are grown on Ni foam using electrodeposition followed by air anneali...
Metal oxide and nanocarbon heterostructures provide a powerful strategy to materials innovation beca...