Neutral aqueous zinc–air batteries (ZABs) are an emerging type of energy devices with substantially elongated lifetime and improved recyclability compared to conventional alkaline ZABs. However, their development is impeded by the lack of robust bifunctional catalyst at the air-electrode for the oxygen evolution reaction (OER) and the oxygen reduction reaction (ORR). Here, we report the controlled synthesis of NiFe2O4/FeNi2S4 heterostructured nanosheets (HNSs) that are highly efficient in catalyzing OER and ORR, therefore enabling neutral rechargeable ZABs. Associated with the formation of abundant oxide/sulfide interfaces over NiFe2O4/FeNi2S4 HNSs’ surfaces, the catalyst’s oxygen binding energy can be effectively tuned to enhance the OER a...
The exploitation of a high-efficient, low-cost, and stable non-noble-metal-based catalyst with oxyge...
Zinc-air batteries (ZABs) have been considered as a next-generation battery system with high energy ...
Efficient catalysts for oxygen evolution reactions (OERs) are a key renewable energy technology for ...
A facile H2O2 oxidation treatment to tune the properties of metal disulfides for oxygen evolution re...
Sluggish oxygen electrochemistry including both oxygen evolution reactions (OER) and oxygen reductio...
Sluggish oxygen electrochemistry including both oxygen evolution reactions (OER) and oxygen reductio...
Zinc-oxygen batteries are promising candidates for electrical vehicles and electric grid energy stor...
Zinc-oxygen batteries are promising candidates for electrical vehicles and electric grid energy stor...
The electrochemical reduction of oxygen to water and the evolution of oxygen from water are two impo...
Rechargeable Zn–air battery is a promising next-generation energy storage device attributed to its h...
Rechargeable Zn–air battery is a promising next-generation energy storage device attributed to its h...
Rechargeable Zn–air battery is a promising next-generation energy storage device attributed to its h...
Abstract The discovery of low‐cost and high‐performance bifunctional oxygen electrocatalysts is vita...
Aqueous rechargeable zinc (Zn)–air batteries have recently attracted extensive research interest due...
Designing efficient and affordable electrocatalysts for reversible oxygen electrocatalysis (oxygen r...
The exploitation of a high-efficient, low-cost, and stable non-noble-metal-based catalyst with oxyge...
Zinc-air batteries (ZABs) have been considered as a next-generation battery system with high energy ...
Efficient catalysts for oxygen evolution reactions (OERs) are a key renewable energy technology for ...
A facile H2O2 oxidation treatment to tune the properties of metal disulfides for oxygen evolution re...
Sluggish oxygen electrochemistry including both oxygen evolution reactions (OER) and oxygen reductio...
Sluggish oxygen electrochemistry including both oxygen evolution reactions (OER) and oxygen reductio...
Zinc-oxygen batteries are promising candidates for electrical vehicles and electric grid energy stor...
Zinc-oxygen batteries are promising candidates for electrical vehicles and electric grid energy stor...
The electrochemical reduction of oxygen to water and the evolution of oxygen from water are two impo...
Rechargeable Zn–air battery is a promising next-generation energy storage device attributed to its h...
Rechargeable Zn–air battery is a promising next-generation energy storage device attributed to its h...
Rechargeable Zn–air battery is a promising next-generation energy storage device attributed to its h...
Abstract The discovery of low‐cost and high‐performance bifunctional oxygen electrocatalysts is vita...
Aqueous rechargeable zinc (Zn)–air batteries have recently attracted extensive research interest due...
Designing efficient and affordable electrocatalysts for reversible oxygen electrocatalysis (oxygen r...
The exploitation of a high-efficient, low-cost, and stable non-noble-metal-based catalyst with oxyge...
Zinc-air batteries (ZABs) have been considered as a next-generation battery system with high energy ...
Efficient catalysts for oxygen evolution reactions (OERs) are a key renewable energy technology for ...