The amorphous NiFeOx(OH)(y) is synthesized on Fe, Ni, and Cu foam substrates to study the effects of the metal substrates on activity and stability for the electrochemical oxygen evolution reaction (OER) from water. The metal substrate for NiFeOx(OH)(y) catalyst does not merely perform the physical role of loading the catalyst, but actively participates in the activation process of the catalyst phase by controlling the charge transfer during the OER. The Ni foam substrate is found to be the best to make NiFeOx(OH)(y)/Ni foam the most active and the most stable electrode for OER in an alkaline medium due to its multiple functions. The nickel substrate forms the thinnest oxide layer on its surface to allow facile charge transfer, and stabiliz...
Developing low-cost yet highly efficient earth-abundant electrocatalysts for oxygen evolution reacti...
This article reports the two-step synthesis of NiFeOx nanomaterials and their characterization and b...
This article reports the two-step synthesis of NiFeOx nanomaterials and their characterization and b...
NiFe- and CoFe-based (oxy)hydroxides stand out as promising and highly active earth-abundant electro...
Understanding the oxygen evolution reaction (OER) activity and stability of the NiFe-based materials...
Understanding the oxygen evolution reaction (OER) activity and stability of the NiFe-based materials...
A detailed investigation has been carried out of the structure and electrochemical activity of elect...
A detailed investigation has been carried out of the structure and electrochemical activity of elect...
A simple anodizing technique has been employed to develop highly active electrocatalysts that can be...
For industrial-scale water electrolysis, development of a highly stable and active oxygen evolution ...
The growing demand of energy coupled with the limited supply of the major energy sources such as fos...
A series of Ni/Fe electrodes have been prepared by electrodeposition of metal salt precursors on dif...
Water splitting for hydrogen production is a promising method for storing sustainable energy sources...
As the energy needs of society continue to grow, and pressure to produce fewer emissions continues t...
Oxygen evolution reaction (OER) electrocatalysts are pivotal for sustainable hydrogen production thr...
Developing low-cost yet highly efficient earth-abundant electrocatalysts for oxygen evolution reacti...
This article reports the two-step synthesis of NiFeOx nanomaterials and their characterization and b...
This article reports the two-step synthesis of NiFeOx nanomaterials and their characterization and b...
NiFe- and CoFe-based (oxy)hydroxides stand out as promising and highly active earth-abundant electro...
Understanding the oxygen evolution reaction (OER) activity and stability of the NiFe-based materials...
Understanding the oxygen evolution reaction (OER) activity and stability of the NiFe-based materials...
A detailed investigation has been carried out of the structure and electrochemical activity of elect...
A detailed investigation has been carried out of the structure and electrochemical activity of elect...
A simple anodizing technique has been employed to develop highly active electrocatalysts that can be...
For industrial-scale water electrolysis, development of a highly stable and active oxygen evolution ...
The growing demand of energy coupled with the limited supply of the major energy sources such as fos...
A series of Ni/Fe electrodes have been prepared by electrodeposition of metal salt precursors on dif...
Water splitting for hydrogen production is a promising method for storing sustainable energy sources...
As the energy needs of society continue to grow, and pressure to produce fewer emissions continues t...
Oxygen evolution reaction (OER) electrocatalysts are pivotal for sustainable hydrogen production thr...
Developing low-cost yet highly efficient earth-abundant electrocatalysts for oxygen evolution reacti...
This article reports the two-step synthesis of NiFeOx nanomaterials and their characterization and b...
This article reports the two-step synthesis of NiFeOx nanomaterials and their characterization and b...