Cobalt oxide nanostructures have been considered as promising electrode materials for various electrochemical applications, especially for batteries, supercapacitors, and electrocatalysis, owing to their unparalleled advantages of high theoretical capacity, highly-active catalytic properties, and outstanding thermal/chemical stability. If hybridized with property-complementary nanomaterials, such as nanocarbon, CNTs, graphene, metal oxides/sulfides and conductive polymers, their electrochemical properties can be further enhanced in terms of specific reversible capacity/capacitance, rate capability, cycling stability, and catalytic activity. In this review, we first give a comprehensive overview on recent progress in both monolithic cobalt o...
As the postindustrial revolution world continues to phase out the use of carbon-based energy sources...
Investigations on supercapacitors are focusing on increasing energy densities, in particular with th...
© 2015 Elsevier Ltd. All rights reserved. We developed a simple strategy to prepare a multiwall carb...
Cobalt oxide nanostructures have been considered as promising electrode materials for various electr...
Among many electrode materials, cobalt-based nanomaterials are widely used in supercapacitors becaus...
Transition metal oxides and sulfides have great potential for energy storage devices due to their la...
Cobalt oxide (CoOx) nanowires have been broadly explored as advanced pseudocapacitive materials owin...
Design of high efficiency energy accumulators has recently become an important issue of science and ...
To improve the electrochemical performance of cobalt oxide owing to its inherent poor electrical con...
We demonstrate the preparation of nanostructures cobalt oxide/reduced graphene oxide (Co3O4/rGO) nan...
Cobalt oxides have been extensively used as conductive additives for Ni-MH batteries. We report in t...
Design of high efficiency energy accumulators has recently become an important issue of science and ...
A hybrid supercapacitor that employs nanomaterial has been extensively studied recently. However, in...
With the increasing demand for sustainable and green energy, electric energy storage technologies ha...
Cobalt oxides are attractive alternative anode materials for next-generation lithium-ion batteries (...
As the postindustrial revolution world continues to phase out the use of carbon-based energy sources...
Investigations on supercapacitors are focusing on increasing energy densities, in particular with th...
© 2015 Elsevier Ltd. All rights reserved. We developed a simple strategy to prepare a multiwall carb...
Cobalt oxide nanostructures have been considered as promising electrode materials for various electr...
Among many electrode materials, cobalt-based nanomaterials are widely used in supercapacitors becaus...
Transition metal oxides and sulfides have great potential for energy storage devices due to their la...
Cobalt oxide (CoOx) nanowires have been broadly explored as advanced pseudocapacitive materials owin...
Design of high efficiency energy accumulators has recently become an important issue of science and ...
To improve the electrochemical performance of cobalt oxide owing to its inherent poor electrical con...
We demonstrate the preparation of nanostructures cobalt oxide/reduced graphene oxide (Co3O4/rGO) nan...
Cobalt oxides have been extensively used as conductive additives for Ni-MH batteries. We report in t...
Design of high efficiency energy accumulators has recently become an important issue of science and ...
A hybrid supercapacitor that employs nanomaterial has been extensively studied recently. However, in...
With the increasing demand for sustainable and green energy, electric energy storage technologies ha...
Cobalt oxides are attractive alternative anode materials for next-generation lithium-ion batteries (...
As the postindustrial revolution world continues to phase out the use of carbon-based energy sources...
Investigations on supercapacitors are focusing on increasing energy densities, in particular with th...
© 2015 Elsevier Ltd. All rights reserved. We developed a simple strategy to prepare a multiwall carb...