Sluggish oxygen electrochemistry including both oxygen evolution reactions (OER) and oxygen reduction reactions (ORR) greatly restricts the performance of rechargeable metal–air battery. Herein, we couple NiFe sulfide (NiFeS2) with S-doped graphene oxide (S-GO) via a simultaneous sulfurization strategy to significantly improve the OER and ORR activities. The NiFeS2/S-GO on glassy carbon yields an OER current density of 10 mA cm−2 at 1.47 V and an ORR half-wave potential at 0.74 V (vs. RHE), giving an overvoltage difference as low as 0.73 V. When assembled in a rechargeable Zn–air battery, the battery with NiFeS2/S-GO air electrode exhibits a steady charging potential (1.98 V) with very little decay in discharging potential (from 1.20 to 1.1...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
Transition metal sulfide (TMS) promises an excellent prospect in electrocatalysis with high intrinsi...
The development of low-cost and efficient electrocatalysts with a bicomponent active surface for rev...
Sluggish oxygen electrochemistry including both oxygen evolution reactions (OER) and oxygen reductio...
Earth-abundant and high-performance catalysts for oxygen evolution reaction (OER) and oxygen reducti...
A facile H2O2 oxidation treatment to tune the properties of metal disulfides for oxygen evolution re...
© The Royal Society of Chemistry 2015. We report cobalt sulfide nanoparticles decorated nitrogen and...
The development of efficient and cost-effective bi-functional electrocatalysts toward oxygen reducti...
Neutral aqueous zinc–air batteries (ZABs) are an emerging type of energy devices with substantially ...
Electrocatalysis for the oxygen evolution reaction (OER) plays an irreplaceable role in numerous gre...
Abstract The development of efficient earth-abundant electrocatalysts for oxygen reduction, oxygen e...
Developing bifunctional catalysts for oxygen reduction reaction (ORR) and oxygen evolution reaction ...
Rational design of electrocatalysts to replace the noble-metal-based materials for oxygen reactions ...
Designing efficient and affordable electrocatalysts for reversible oxygen electrocatalysis (oxygen r...
Efficient catalysts for oxygen evolution reactions (OERs) are a key renewable energy technology for ...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
Transition metal sulfide (TMS) promises an excellent prospect in electrocatalysis with high intrinsi...
The development of low-cost and efficient electrocatalysts with a bicomponent active surface for rev...
Sluggish oxygen electrochemistry including both oxygen evolution reactions (OER) and oxygen reductio...
Earth-abundant and high-performance catalysts for oxygen evolution reaction (OER) and oxygen reducti...
A facile H2O2 oxidation treatment to tune the properties of metal disulfides for oxygen evolution re...
© The Royal Society of Chemistry 2015. We report cobalt sulfide nanoparticles decorated nitrogen and...
The development of efficient and cost-effective bi-functional electrocatalysts toward oxygen reducti...
Neutral aqueous zinc–air batteries (ZABs) are an emerging type of energy devices with substantially ...
Electrocatalysis for the oxygen evolution reaction (OER) plays an irreplaceable role in numerous gre...
Abstract The development of efficient earth-abundant electrocatalysts for oxygen reduction, oxygen e...
Developing bifunctional catalysts for oxygen reduction reaction (ORR) and oxygen evolution reaction ...
Rational design of electrocatalysts to replace the noble-metal-based materials for oxygen reactions ...
Designing efficient and affordable electrocatalysts for reversible oxygen electrocatalysis (oxygen r...
Efficient catalysts for oxygen evolution reactions (OERs) are a key renewable energy technology for ...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
Transition metal sulfide (TMS) promises an excellent prospect in electrocatalysis with high intrinsi...
The development of low-cost and efficient electrocatalysts with a bicomponent active surface for rev...