Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapacitors due to their good conductivity and long-term stability. Herein, we have inrtoduced cobalt cyclotetraphosphate (Co2P4O12) as novel supercapacitive electrode material, which deliver a capacitance of 437 F/g with good stability over 3000 cycles (around 90%). To display the practical relevance, we have fabricated asymmetric device using activated carbon and Co2P4O12 as negative and positive electrodes, respecitvely, which can be operated up to 1.4 V. The introduction of redox-active moieties (such as potassium iodide (KI)) in parent KOH solution enhances the capacitance from 120 F/g to 156 F/g for Co2P4O12//AC cell with extended voltage win...
Hierarchical structured cobalt phosphate (Co-3(PO4)(2)) nanoflakes were synthesized by simple co-pre...
Supercapacitor electrodes heavily loaded with active material suffer from low areal capacitances bec...
The intrinsically poor electrical conductivity and insufficient number of electrochemically active s...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
Most reported pristine phosphates, such as NH4MPO4·H2O (M = Co, Ni), are not very stable as supercap...
Cobalt pyrophosphate (Co2P2O7) has emerged as an attractive material due to its high specific energy...
The supercapattery is an ideal energy storage device that combines excellent power density and rate ...
In the presence of fossil fuels, several environmental concerns, such as energy shortage, environmen...
Cobalt oxides have been extensively used as conductive additives for Ni-MH batteries. We report in t...
It is extremely urgent to develop novel electrode materials with large capacity, high charge–dischar...
As a new type of energy storage device, supercapacitor has gained a lot of popularity due to its sup...
Here, we report about the synthesis of Cobalt-Copper (CC) mixed oxides prepared by electrodeposition...
Energy storage system based on supercapacitors has recently received lots of attention as a compleme...
The latest technological developments have catalyzed the quest for efficient electrochemical energy ...
Hierarchical structured cobalt phosphate (Co-3(PO4)(2)) nanoflakes were synthesized by simple co-pre...
Supercapacitor electrodes heavily loaded with active material suffer from low areal capacitances bec...
The intrinsically poor electrical conductivity and insufficient number of electrochemically active s...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
Most reported pristine phosphates, such as NH4MPO4·H2O (M = Co, Ni), are not very stable as supercap...
Cobalt pyrophosphate (Co2P2O7) has emerged as an attractive material due to its high specific energy...
The supercapattery is an ideal energy storage device that combines excellent power density and rate ...
In the presence of fossil fuels, several environmental concerns, such as energy shortage, environmen...
Cobalt oxides have been extensively used as conductive additives for Ni-MH batteries. We report in t...
It is extremely urgent to develop novel electrode materials with large capacity, high charge–dischar...
As a new type of energy storage device, supercapacitor has gained a lot of popularity due to its sup...
Here, we report about the synthesis of Cobalt-Copper (CC) mixed oxides prepared by electrodeposition...
Energy storage system based on supercapacitors has recently received lots of attention as a compleme...
The latest technological developments have catalyzed the quest for efficient electrochemical energy ...
Hierarchical structured cobalt phosphate (Co-3(PO4)(2)) nanoflakes were synthesized by simple co-pre...
Supercapacitor electrodes heavily loaded with active material suffer from low areal capacitances bec...
The intrinsically poor electrical conductivity and insufficient number of electrochemically active s...