Zinc cobalt sulfide (ZCS) is a promising and high performance electrode material for pseudocapacitors due to its good electrical conductivity, abundant active sites and rich valence states. In this work, zinc cobalt oxide (ZCO) nanoparticles are firstly synthesized via a hydrothermal method assisted by hexadecyltrimethyl ammonium bromide (CTAB), and then transformed into zinc cobalt sulfide nanoparticles (ZCS NPs) using a facile sulfuration process. The average diameter of ZCS NPs is estimated to be about 15 nm, which is beneficial for Faradaic redox reactions in energy storage process due to their numerous active surfaces. The ZCS NPs are then coated onto a nickel foam to form the working electrode of supercapacitors. Because the ZCS elect...
Herein, a facile, environment-friendly and cost-effective approach was followed for the preparation ...
There is an urgent need to design and develop materials for high-performance electrochemical energy ...
Zinc sulfide (ZnS) semiconducting material possesses excellent chemical stability and efficient elec...
Fast charging/discharging rate, sustained cycle life, and high power density are irreplaceable virtu...
Fast charging/discharging rate, sustained cycle life, and high power density are irreplaceable virtu...
International audienceBimetal sulfides as anode electrode materials have attracted extensive attenti...
Mixed metal sulfides exhibit outstanding electrochemical performance compared to single metal sulfid...
Conducting nanowires are of particular interest in energy-related research on devices such as superc...
Conducting nanowires are of particular interest in energy-related research on devices such as superc...
Electrical energy storage technologies have been profoundly impacted by nano-science and technology,...
It is a great challenge to achieve both high specific capacity and high energy density of supercapac...
A facile one-step electrodeposition method is developed to prepare ternary nickel cobalt sulfide int...
Transition metal compounds such as nickel cobalt sulfides (Ni-Co-S) are promising electrode material...
In this study, cobalt sulfide (CoS) electrodes are synthesized using various solvents such as water,...
Herein, binder-free hierarchically structured nickel cobalt sulfide nanoflakes on CoO nanosheets wit...
Herein, a facile, environment-friendly and cost-effective approach was followed for the preparation ...
There is an urgent need to design and develop materials for high-performance electrochemical energy ...
Zinc sulfide (ZnS) semiconducting material possesses excellent chemical stability and efficient elec...
Fast charging/discharging rate, sustained cycle life, and high power density are irreplaceable virtu...
Fast charging/discharging rate, sustained cycle life, and high power density are irreplaceable virtu...
International audienceBimetal sulfides as anode electrode materials have attracted extensive attenti...
Mixed metal sulfides exhibit outstanding electrochemical performance compared to single metal sulfid...
Conducting nanowires are of particular interest in energy-related research on devices such as superc...
Conducting nanowires are of particular interest in energy-related research on devices such as superc...
Electrical energy storage technologies have been profoundly impacted by nano-science and technology,...
It is a great challenge to achieve both high specific capacity and high energy density of supercapac...
A facile one-step electrodeposition method is developed to prepare ternary nickel cobalt sulfide int...
Transition metal compounds such as nickel cobalt sulfides (Ni-Co-S) are promising electrode material...
In this study, cobalt sulfide (CoS) electrodes are synthesized using various solvents such as water,...
Herein, binder-free hierarchically structured nickel cobalt sulfide nanoflakes on CoO nanosheets wit...
Herein, a facile, environment-friendly and cost-effective approach was followed for the preparation ...
There is an urgent need to design and develop materials for high-performance electrochemical energy ...
Zinc sulfide (ZnS) semiconducting material possesses excellent chemical stability and efficient elec...