Developing highly active and durable electro-catalysts, consisting of earth-abundant elements, for oxygen evolution reaction (OER) is pivotal for large-scale water splitting for hydrogen production. Herein, we report that the commercially available FeNiCo alloy can be converted to a highly active electrocatalyst for OER by galvanostatic anodizing in a fluoride-containing ethylene glycol electrolyte. Anodizing of the alloy develops a porous film consisting of the (FeNiCo)F-2 phase, which is readily converted to a highly active porous oxyhydroxide during anodic polarization in a KOH electrolyte. The anodized alloy exhibits high activity and high durability for OER with an overpotential as low as 0.26 V at a current density of 10 mA cm(-2). Th...
The exploration of efficient nonprecious metal‐based oxygen evolution reaction (OER) electrocatalyst...
The amorphous NiFeOx(OH)(y) is synthesized on Fe, Ni, and Cu foam substrates to study the effects of...
The storage of electricity from intermittent renewable energy sources in the form of hydrogen via wa...
A simple anodizing technique has been employed to develop highly active electrocatalysts that can be...
Brownmillerite-type Ca2FeCoO5 (CFCO) is a highly active electrocatalyst for the oxygen evolution rea...
The growing demand of energy coupled with the limited supply of the major energy sources such as fos...
Electrochemical water splitting is an important process to produce hydrogen and oxygen for energy st...
The electrochemical water splitting commonly involves the cathodic hydrogen and anodic oxygen evolut...
The electrochemical water splitting commonly involves the cathodic hydrogen and anodic oxygen evolut...
It is an urgent challenge to develop low-cost and high-performance catalysts for the oxygen evolutio...
The oxygen evolution reaction (OER) is a key half-reaction involved in many important electrochemica...
The urgency of developing sustainable and renewable energy sources has been heightened by limited fo...
NiFe- and CoFe-based (oxy)hydroxides stand out as promising and highly active earth-abundant electro...
Developing practical water-splitting devices that convert earth-abundant solar energy and water into...
Oxygen evolution reaction (OER) electrocatalysts are pivotal for sustainable hydrogen production thr...
The exploration of efficient nonprecious metal‐based oxygen evolution reaction (OER) electrocatalyst...
The amorphous NiFeOx(OH)(y) is synthesized on Fe, Ni, and Cu foam substrates to study the effects of...
The storage of electricity from intermittent renewable energy sources in the form of hydrogen via wa...
A simple anodizing technique has been employed to develop highly active electrocatalysts that can be...
Brownmillerite-type Ca2FeCoO5 (CFCO) is a highly active electrocatalyst for the oxygen evolution rea...
The growing demand of energy coupled with the limited supply of the major energy sources such as fos...
Electrochemical water splitting is an important process to produce hydrogen and oxygen for energy st...
The electrochemical water splitting commonly involves the cathodic hydrogen and anodic oxygen evolut...
The electrochemical water splitting commonly involves the cathodic hydrogen and anodic oxygen evolut...
It is an urgent challenge to develop low-cost and high-performance catalysts for the oxygen evolutio...
The oxygen evolution reaction (OER) is a key half-reaction involved in many important electrochemica...
The urgency of developing sustainable and renewable energy sources has been heightened by limited fo...
NiFe- and CoFe-based (oxy)hydroxides stand out as promising and highly active earth-abundant electro...
Developing practical water-splitting devices that convert earth-abundant solar energy and water into...
Oxygen evolution reaction (OER) electrocatalysts are pivotal for sustainable hydrogen production thr...
The exploration of efficient nonprecious metal‐based oxygen evolution reaction (OER) electrocatalyst...
The amorphous NiFeOx(OH)(y) is synthesized on Fe, Ni, and Cu foam substrates to study the effects of...
The storage of electricity from intermittent renewable energy sources in the form of hydrogen via wa...