The complex hollow CuO spheres with multi-shelled and rattle-type structures were successfully synthesized using cetyltrimethy-lammonium bromide (CTAB) multi-lamellar vesicles as soft templates. The physical properties of materials were characterized using X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM) and field emission transmission electron microscopy (FE-TEM). The electrochemical properties were measured to investigate the galvanostatic charge-discharge ability. The directly synthesized CuO powder was found to have single, multi-shelled or rattled-type hollow spheres structure. These CuO nano-structures were used as anode material in a lithium secondary battery. The cell with the complex hollow CuO nano-arc...
The electrochemical reactivity of tailor-made CuO powders prepared according to a new low-temperatur...
In this work, different types of CuO particles with a thin carbon layer were fabricated and tested a...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
ABSTRACT: Nanostructured CuO anode materials with controllable morphologies have been successfully s...
We report the preparation and characterization of mesoporous hollow CuO (MPH-CuO) microspheres by th...
Nanostructured CuO anode materials with controllable morphologies have been successfully synthesized...
A new approach to develop novel hollow urchinlike copper oxide (CuO) microspheres by the hydrotherma...
Hollow nanomaterials provide abundant reaction sites and facilitate tolerance for volume changes dur...
Hollow nanomaterials provide abundant reaction sites and facilitate tolerance for volume changes dur...
We report the comparative investigation on the electrochemical application of mesoporous copper oxid...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
The electrochemical reactivity of tailor-made CuO powders prepared according to a new low-temperatur...
We report the preparation of high surface area hedgehog-like CuO microspheres by a wet-chemical meth...
CuO powders composed of different rod-like clusters or dandelion-like nanospheres are prepared by a ...
In this work, different types of CuO particles with a thin carbon layer were fabricated and tested a...
The electrochemical reactivity of tailor-made CuO powders prepared according to a new low-temperatur...
In this work, different types of CuO particles with a thin carbon layer were fabricated and tested a...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
ABSTRACT: Nanostructured CuO anode materials with controllable morphologies have been successfully s...
We report the preparation and characterization of mesoporous hollow CuO (MPH-CuO) microspheres by th...
Nanostructured CuO anode materials with controllable morphologies have been successfully synthesized...
A new approach to develop novel hollow urchinlike copper oxide (CuO) microspheres by the hydrotherma...
Hollow nanomaterials provide abundant reaction sites and facilitate tolerance for volume changes dur...
Hollow nanomaterials provide abundant reaction sites and facilitate tolerance for volume changes dur...
We report the comparative investigation on the electrochemical application of mesoporous copper oxid...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...
The electrochemical reactivity of tailor-made CuO powders prepared according to a new low-temperatur...
We report the preparation of high surface area hedgehog-like CuO microspheres by a wet-chemical meth...
CuO powders composed of different rod-like clusters or dandelion-like nanospheres are prepared by a ...
In this work, different types of CuO particles with a thin carbon layer were fabricated and tested a...
The electrochemical reactivity of tailor-made CuO powders prepared according to a new low-temperatur...
In this work, different types of CuO particles with a thin carbon layer were fabricated and tested a...
Here copper oxide hierarchical microspheres directly grown on copper foil are achieved through a hyd...