Hollow nanomaterials provide abundant reaction sites and facilitate tolerance for volume changes during the charging-discharging process, and are potential candidates for alkaline ion storage. In this work, hollow CuO nanocubes are synthesized via solvothermal reaction and subsequent annealing, which serve as alkali-ion battery anode materials. Based on Ostwald ripening, the precursor Cu2O nanocubes with vacancies are initially fabricated during the solvothermal process. Subsequently, after thermal annealing, the Cu2O nanocubes are converted into hollow CuO nanocubes, which could enhance lithium/sodium storage performances. As anodes for lithium-ion batteries, hollow CuO nanocubes exhibit a high capacity of 865 mAh g(-1) at 0.1 A g(-1) afte...
The fast capacity decay of existing anode materials at a high rate is a thorny problem that hinders ...
In this study, self-prepared nanostructured CuO electrodes show no capacity decay for 40 cycles at 0...
Metal oxide and nanocarbon heterostructures provide a powerful strategy to materials innovation beca...
Hollow nanomaterials provide abundant reaction sites and facilitate tolerance for volume changes dur...
Uniform hollow octahedra of Cu2O were successfully synthesized by the facile room-temperature chemic...
ABSTRACT: Nanostructured CuO anode materials with controllable morphologies have been successfully s...
The complex hollow CuO spheres with multi-shelled and rattle-type structures were successfully synth...
Nanostructured CuO anode materials with controllable morphologies have been successfully synthesized...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
We demonstrated an efficient room-temperature chemical transformation route to CuO nanowires (NWs), ...
We report the preparation and characterization of mesoporous hollow CuO (MPH-CuO) microspheres by th...
Arrays of CuO nanostructures, including nanorods and nanosheets, supported on a Cu substrate have be...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
Abstract Hollow nanostructures of copper oxides help to stabilize appreciably higher electrochemical...
A rational integration of 1D metallic nanotubes and oxide nanoparticles has been demonstrated as a v...
The fast capacity decay of existing anode materials at a high rate is a thorny problem that hinders ...
In this study, self-prepared nanostructured CuO electrodes show no capacity decay for 40 cycles at 0...
Metal oxide and nanocarbon heterostructures provide a powerful strategy to materials innovation beca...
Hollow nanomaterials provide abundant reaction sites and facilitate tolerance for volume changes dur...
Uniform hollow octahedra of Cu2O were successfully synthesized by the facile room-temperature chemic...
ABSTRACT: Nanostructured CuO anode materials with controllable morphologies have been successfully s...
The complex hollow CuO spheres with multi-shelled and rattle-type structures were successfully synth...
Nanostructured CuO anode materials with controllable morphologies have been successfully synthesized...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
We demonstrated an efficient room-temperature chemical transformation route to CuO nanowires (NWs), ...
We report the preparation and characterization of mesoporous hollow CuO (MPH-CuO) microspheres by th...
Arrays of CuO nanostructures, including nanorods and nanosheets, supported on a Cu substrate have be...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
Abstract Hollow nanostructures of copper oxides help to stabilize appreciably higher electrochemical...
A rational integration of 1D metallic nanotubes and oxide nanoparticles has been demonstrated as a v...
The fast capacity decay of existing anode materials at a high rate is a thorny problem that hinders ...
In this study, self-prepared nanostructured CuO electrodes show no capacity decay for 40 cycles at 0...
Metal oxide and nanocarbon heterostructures provide a powerful strategy to materials innovation beca...