Cobalt oxide (CoOx) nanowires have been broadly explored as advanced pseudocapacitive materials owing to their impressive theoretical gravimetric capacity. However, the traditional method of compositing with conductive nanoparticles to improve their poor conductivity will unpredictably lead to a decrease in actual capacity. The amelioration of the aspect ratio of the CoOx nanowires may affect the pathway of electron conduction and ion diffusion, thereby improving the electrochemical performances. Here, CoOx nanowires with various aspect ratios were synthesized by controlling hydrothermal temperature, and the CoOx electrodes achieve a high gravimetric specific capacity (1424.8 C g−1) and rate performance (38% retention at 100 A g−1 compared ...
The search for faster, safer, and more efficient energy storage systems continues to inspire researc...
Cobalt oxides have been extensively used as conductive additives for Ni-MH batteries. We report in t...
Porous Co3O4 nanowires with large aspect ratio have been obtained by annealing long Co(CO3)0.5(OH)·0...
Electrochemical materials are under rigorous search for building advanced energy storage devices. He...
Cobalt oxide nanostructures have been considered as promising electrode materials for various electr...
A one-dimensional morphology comprising nanograins of two metal oxides, one with higher electrical c...
Abstract Self-stabilized and well-defined chlorine-doped carbonated cobalt hydroxide nanowires have ...
High-rate aqueous hybrid supercapacitors (AHSCs) have attracted relevant scientific significance owi...
Among many electrode materials, cobalt-based nanomaterials are widely used in supercapacitors becaus...
A high-performance supercapacitor electrode is designed and fabricated with the 3D interconnected co...
Development of supercapacitors which exhibit high energy density without much compromise on power de...
Development of supercapacitors which exhibit high energy density without much compromise on power de...
As a new type of energy storage device, supercapacitor has gained a lot of popularity due to its sup...
Nanoporous carbon (CMK-3-150) functionalized with different amounts of cobalt oxide (CoO) nanopartic...
Transition metal oxides with high theoretic capacities are promising materials as battery-type elect...
The search for faster, safer, and more efficient energy storage systems continues to inspire researc...
Cobalt oxides have been extensively used as conductive additives for Ni-MH batteries. We report in t...
Porous Co3O4 nanowires with large aspect ratio have been obtained by annealing long Co(CO3)0.5(OH)·0...
Electrochemical materials are under rigorous search for building advanced energy storage devices. He...
Cobalt oxide nanostructures have been considered as promising electrode materials for various electr...
A one-dimensional morphology comprising nanograins of two metal oxides, one with higher electrical c...
Abstract Self-stabilized and well-defined chlorine-doped carbonated cobalt hydroxide nanowires have ...
High-rate aqueous hybrid supercapacitors (AHSCs) have attracted relevant scientific significance owi...
Among many electrode materials, cobalt-based nanomaterials are widely used in supercapacitors becaus...
A high-performance supercapacitor electrode is designed and fabricated with the 3D interconnected co...
Development of supercapacitors which exhibit high energy density without much compromise on power de...
Development of supercapacitors which exhibit high energy density without much compromise on power de...
As a new type of energy storage device, supercapacitor has gained a lot of popularity due to its sup...
Nanoporous carbon (CMK-3-150) functionalized with different amounts of cobalt oxide (CoO) nanopartic...
Transition metal oxides with high theoretic capacities are promising materials as battery-type elect...
The search for faster, safer, and more efficient energy storage systems continues to inspire researc...
Cobalt oxides have been extensively used as conductive additives for Ni-MH batteries. We report in t...
Porous Co3O4 nanowires with large aspect ratio have been obtained by annealing long Co(CO3)0.5(OH)·0...