Electrode materials for high-rate supercapacitors are greatly desired. Among actively studied electrode materials, phosphide compounds with metallic features are recognized as such promising supercapacitor materials. In this work, considering the benefits of multimetal redox centers and superior electrical conductivity of ternary nickel–cobalt metal phosphides for improving the supercapacitor performance, urchin-like nickel–cobalt phosphide hollow spheres were prepared with a mild hydrothermal method followed by phosphorization. The formation process was explored using time-dependent experiments. The prepared material exhibited an excellent capacity of 761 C g–1 at a current density of 1 A g–1, with 693 C g–1 remaining even at 20 A g–1, whi...
Electrochemical energy storage technologies are nowadays playing a leading role in the global effort...
Supercapacitors (SCs) are widely used in energy storage devices due to their superior power density ...
The performance of a supercapattery depends on its energy density, rate capability of charge and dis...
We report a versatile route for the preparation of metal phosphides using PH3 plasma for supercapaci...
Development of electrode materials with faster charge kinetics and high electrical conductivity are ...
Transition metal phosphide composite materials have become an excellent choice for use in supercapac...
Energy storage system based on supercapacitors has recently received lots of attention as a compleme...
Improved capacitive performance of the electrochemical energy storage devices can be achieved by man...
Most reported pristine phosphates, such as NH4MPO4·H2O (M = Co, Ni), are not very stable as supercap...
Nickel–cobalt oxides/hydroxides have been considered as promising electrode materials for a high-per...
A unique multifunctional electrode made of well-defined highly crystalline Ni–P nanoparticles interw...
To obtain a supercapacitor with a remarkable specific capacitance and rate performance, a cogent des...
Ni-doped Co11(HPO3)8(OH)6 with different morphologies was directly grown on Ni foam hydro(solvo)th...
Highly conductive and stable electrode materials are usually the focus of high-performance supercapa...
Bimetal phosphates, especially those with hollow structures, have been recognized as promising mater...
Electrochemical energy storage technologies are nowadays playing a leading role in the global effort...
Supercapacitors (SCs) are widely used in energy storage devices due to their superior power density ...
The performance of a supercapattery depends on its energy density, rate capability of charge and dis...
We report a versatile route for the preparation of metal phosphides using PH3 plasma for supercapaci...
Development of electrode materials with faster charge kinetics and high electrical conductivity are ...
Transition metal phosphide composite materials have become an excellent choice for use in supercapac...
Energy storage system based on supercapacitors has recently received lots of attention as a compleme...
Improved capacitive performance of the electrochemical energy storage devices can be achieved by man...
Most reported pristine phosphates, such as NH4MPO4·H2O (M = Co, Ni), are not very stable as supercap...
Nickel–cobalt oxides/hydroxides have been considered as promising electrode materials for a high-per...
A unique multifunctional electrode made of well-defined highly crystalline Ni–P nanoparticles interw...
To obtain a supercapacitor with a remarkable specific capacitance and rate performance, a cogent des...
Ni-doped Co11(HPO3)8(OH)6 with different morphologies was directly grown on Ni foam hydro(solvo)th...
Highly conductive and stable electrode materials are usually the focus of high-performance supercapa...
Bimetal phosphates, especially those with hollow structures, have been recognized as promising mater...
Electrochemical energy storage technologies are nowadays playing a leading role in the global effort...
Supercapacitors (SCs) are widely used in energy storage devices due to their superior power density ...
The performance of a supercapattery depends on its energy density, rate capability of charge and dis...