Electrochemical oxygen evolution and reduction reactions have received great attention due to their importance in several key technologies such as fuel cells, electrolyzers, and metal–air batteries. Here, we present a simple approach to the preparation of cobalt sulfide nanoparticles in situ grown on a nitrogen and sulfur codoped graphene oxide surface. The particle size and phase were controlled by changing the treatment temperature. Cobalt sulfide nanoparticles dispersed on graphene oxide hybrids were successfully prepared by a solid-state thermolysis approach at different temperatures (400, 500, and 600 °C) using cobalt thiourea and graphene oxide. X-ray diffraction studies revealed that hybrids prepared at 400 and 500 °C result in pure ...
Developing low-cost and highly active multifunctional electrocatalysts to replace noble metal cataly...
Water electrolysis to generate hydrogen and oxygen at low overpotential is one of the main requireme...
Lithium sulfur batteries provide one of the most attractive opportunities for next generation energy...
A novel 3D cobalt sulfide (CoS) nanoparticle-decorated nitrogen and sulfur co-doped reduced graphene...
A novel 3D cobalt sulfide (CoS) nanoparticle-decorated nitrogen and sulfur co-doped reduced graphene...
Large surface area and unique surface chemical environment are two critical factors for a catalyst, ...
Cobalt sulfide (CoS)/graphene composites are prepared by a facile one-pot hydrothermal method in the...
© The Royal Society of Chemistry 2015. We report cobalt sulfide nanoparticles decorated nitrogen and...
Water electrolysis is an advanced and sustainable energy conversion technology used to generate H-2....
This is the final version. Available on open access from Springer via the DOI in this recordDevelopi...
Cobalt sulfide/sulfur doped carbon composites (Co9S8/S-C) were synthesized by calcining a rationally...
Cobalt sulfide/sulfur doped carbon composites (Co9S8/S-C) were synthesized by calcining a rationally...
We synthesized single-phase CoS2 on a large scale by adding graphene oxide of sufficient quantity vi...
Flexible three-dimensional (3D) nanoarchitectures have received tremendous interest recently because...
It is extremely meaningful to develop cheap, highly efficient, and stable bifunctional electrocataly...
Developing low-cost and highly active multifunctional electrocatalysts to replace noble metal cataly...
Water electrolysis to generate hydrogen and oxygen at low overpotential is one of the main requireme...
Lithium sulfur batteries provide one of the most attractive opportunities for next generation energy...
A novel 3D cobalt sulfide (CoS) nanoparticle-decorated nitrogen and sulfur co-doped reduced graphene...
A novel 3D cobalt sulfide (CoS) nanoparticle-decorated nitrogen and sulfur co-doped reduced graphene...
Large surface area and unique surface chemical environment are two critical factors for a catalyst, ...
Cobalt sulfide (CoS)/graphene composites are prepared by a facile one-pot hydrothermal method in the...
© The Royal Society of Chemistry 2015. We report cobalt sulfide nanoparticles decorated nitrogen and...
Water electrolysis is an advanced and sustainable energy conversion technology used to generate H-2....
This is the final version. Available on open access from Springer via the DOI in this recordDevelopi...
Cobalt sulfide/sulfur doped carbon composites (Co9S8/S-C) were synthesized by calcining a rationally...
Cobalt sulfide/sulfur doped carbon composites (Co9S8/S-C) were synthesized by calcining a rationally...
We synthesized single-phase CoS2 on a large scale by adding graphene oxide of sufficient quantity vi...
Flexible three-dimensional (3D) nanoarchitectures have received tremendous interest recently because...
It is extremely meaningful to develop cheap, highly efficient, and stable bifunctional electrocataly...
Developing low-cost and highly active multifunctional electrocatalysts to replace noble metal cataly...
Water electrolysis to generate hydrogen and oxygen at low overpotential is one of the main requireme...
Lithium sulfur batteries provide one of the most attractive opportunities for next generation energy...