Earth-abundant transition metal-based compounds are of high interest as catalysts for sustainable hydrogen fuel generation. The realization of effective electrolysis of water, however, is still limited by the requirement of a high sustainable driving potential above thermodynamic requirements. Here, we report dynamically self-optimized (DSO) NiFe layered double hydroxide (LDH) nanosheets with promising bi-functional performance. Compared with pristine NiFe LDH, DSO NiFe LDH exhibits much lower overpotential for the hydrogen evolution reaction (HER), even outperforming platinum. Under 1 M KOH aqueous electrolyte, the bi-functional DSO catalysts show an overpotential of 184 and -59 mV without iR compensation for oxygen evolution reaction (OER...
Large-scale H2 production from water by electrochemical water-splitting is mainly limited by the slu...
Large-scale H2 production from water by electrochemical water-splitting is mainly limited by the slu...
Large-scale H2 production from water by electrochemical water-splitting is mainly limited by the slu...
Earth-abundant transition metal-based compounds are of high interest as catalysts for sustainable hy...
Earth-abundant transition metal-based compounds are of high interest as catalysts for sustainable hy...
High-performance, cost-effective and stable electrocatalysts are critical for hydrogen evolution rea...
Alkaline electrolysis is one of the most promising among gas-to-power technologies to produce hydrog...
Alkaline electrolysis is one of the most promising among gas-to-power technologies to produce hydrog...
Water splitting is a green strategy for hydrogen generation but greatly hindered by the sluggish ano...
Water splitting is a green strategy for hydrogen generation but greatly hindered by the sluggish ano...
Water splitting is a green strategy for hydrogen generation but greatly hindered by the sluggish ano...
Water splitting is a green strategy for hydrogen generation but greatly hindered by the sluggish ano...
Water splitting is an environmentally friendly strategy to produce hydrogen but is limited by the ox...
Water splitting is an environmentally friendly strategy to produce hydrogen but is limited by the ox...
Exploring efficient oxygen evolution reaction (OER) catalysts synthesized from low-cost and earth-ab...
Large-scale H2 production from water by electrochemical water-splitting is mainly limited by the slu...
Large-scale H2 production from water by electrochemical water-splitting is mainly limited by the slu...
Large-scale H2 production from water by electrochemical water-splitting is mainly limited by the slu...
Earth-abundant transition metal-based compounds are of high interest as catalysts for sustainable hy...
Earth-abundant transition metal-based compounds are of high interest as catalysts for sustainable hy...
High-performance, cost-effective and stable electrocatalysts are critical for hydrogen evolution rea...
Alkaline electrolysis is one of the most promising among gas-to-power technologies to produce hydrog...
Alkaline electrolysis is one of the most promising among gas-to-power technologies to produce hydrog...
Water splitting is a green strategy for hydrogen generation but greatly hindered by the sluggish ano...
Water splitting is a green strategy for hydrogen generation but greatly hindered by the sluggish ano...
Water splitting is a green strategy for hydrogen generation but greatly hindered by the sluggish ano...
Water splitting is a green strategy for hydrogen generation but greatly hindered by the sluggish ano...
Water splitting is an environmentally friendly strategy to produce hydrogen but is limited by the ox...
Water splitting is an environmentally friendly strategy to produce hydrogen but is limited by the ox...
Exploring efficient oxygen evolution reaction (OER) catalysts synthesized from low-cost and earth-ab...
Large-scale H2 production from water by electrochemical water-splitting is mainly limited by the slu...
Large-scale H2 production from water by electrochemical water-splitting is mainly limited by the slu...
Large-scale H2 production from water by electrochemical water-splitting is mainly limited by the slu...