In this work, we demonstrate a facile, binder-free technique to fabricate 3D Cu2Se nano-cauliflower with 2D CuS nanosheets as a composite on Ni foam by co-electrodeposition technique for high-performance solid-state supercapacitor. The morphology of the composite (Cu2Se@CuS) was confirmed by the scanning electron microscope and the crystal phases of monoclinic Cu2Se and hexagonal CuS were obtained using X-ray diffraction technique. The Cu2Se@CuS composite delivered an ultra-high specific capacitance of 2727 F g−1, compared to its single compound material Cu2Se (1925 F g−1) and CuS (1156 F g−1), respectively at current density of 2.5 mA cm−2 in three-electrode configuration. Ni foam, as a binder-free conducting substrate, acts as uniform gro...
The growth in energy devices and the role of supercapacitors are increasingly important in today’s w...
A cost-effective and uniform crystal with different structures was fabricated using a facile chemica...
As a p-type multifunctional semiconductor, CuSe nanostructures show great promise in optoelectronic,...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
The developments of electrode active materials provide the opportunities for next-generation energy ...
The developments of electrode active materials provide the opportunities for next-generation energy ...
Transition-metal selenides (TMSs) have great potential in the synthesis of supercapacitor electrode ...
Enhanced electrochemical capacitance of 2D-nanosheets of Ni (OH)(2) via reinforcement of star-shaped...
The fascinating properties of transition metal chalcogenides, including their distinctive morphologi...
The fascinating properties of transition metal chalcogenides, including their distinctive morphologi...
The fascinating properties of transition metal chalcogenides, including their distinctive morphologi...
Morphology is a key factor in designing novel nanomaterials with controlled functional properties fo...
Morphology is a key factor in designing novel nanomaterials with controlled functional properties fo...
The growth in energy devices and the role of supercapacitors are increasingly important in today’s w...
A cost-effective and uniform crystal with different structures was fabricated using a facile chemica...
As a p-type multifunctional semiconductor, CuSe nanostructures show great promise in optoelectronic,...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
The developments of electrode active materials provide the opportunities for next-generation energy ...
The developments of electrode active materials provide the opportunities for next-generation energy ...
Transition-metal selenides (TMSs) have great potential in the synthesis of supercapacitor electrode ...
Enhanced electrochemical capacitance of 2D-nanosheets of Ni (OH)(2) via reinforcement of star-shaped...
The fascinating properties of transition metal chalcogenides, including their distinctive morphologi...
The fascinating properties of transition metal chalcogenides, including their distinctive morphologi...
The fascinating properties of transition metal chalcogenides, including their distinctive morphologi...
Morphology is a key factor in designing novel nanomaterials with controlled functional properties fo...
Morphology is a key factor in designing novel nanomaterials with controlled functional properties fo...
The growth in energy devices and the role of supercapacitors are increasingly important in today’s w...
A cost-effective and uniform crystal with different structures was fabricated using a facile chemica...
As a p-type multifunctional semiconductor, CuSe nanostructures show great promise in optoelectronic,...