In this paper, NiMo coatings were electrochemically deposited on a copper electrode (Cu/NiMo) and on an electrodeposited nickel onto copper plate (Cu/Ni/NiMo) in citrate solutions. Effects of electrolyte composition, pH value, and temperature on hydrogen-evolution reaction (HER) as well as the electrochemical stability in alkaline solution were investigated, and the electrochemical activation energy was determined for the NiMo alloys. This was evaluated by the determination of kinetic and mechanism of HER in alkali medium by the polarization measurements, cyclic voltammetry, and electrochemical impedance spectroscopy techniques. The morphology and chemical composition of the electrodeposited Ni-Mo were investigated using SEM and EDS analyse...
Nickel molybdenum NiMo alloys can be a possible alternative to platinum as hydrogen evolution reac...
As a result of research on the non-noble metal-based composite electrocatalysts for the hydrogen evo...
[EN] The hydrogen evolution reaction (HER) is the cathodic process in many important electrochemical...
In this study, Ni-Mo alloy coatings were electrochemically deposited on a copper plate in citrate so...
The hydrogen evolution reaction on the electrodeposited Ni-Mo alloy coatings, as well as their elect...
Platinum is the electrode material with the highest catalytic activity for the hydrogen evolution re...
Ni-Mo alloys and compounds are considered as highly active catalysts for the hydrogen evolution reac...
The given research was driven by prospects to design Mo-rich coatings with iron group metals electro...
The given research was driven by prospects to design Mo-rich coatings with iron group metals electro...
Hydrogen production via electrolysis of water from alkaline aqueous electrolytes is a well-establish...
The given research was driven by prospects to design Mo-rich coatings with iron group metals electro...
Objective of this work was to investigate the electrocatalytic efficiency using quasi-potentiostatic...
Ni-Fe-Mo alloys have been electroplated by using suitable bath solution and plating conditions. SEM ...
Objective of this work was to investigate the electrocatalytic efficiency using quasi-potentiostatic...
Nickel molybdenum NiMo alloys can be a possible alternative to platinum as hydrogen evolution reac...
Nickel molybdenum NiMo alloys can be a possible alternative to platinum as hydrogen evolution reac...
As a result of research on the non-noble metal-based composite electrocatalysts for the hydrogen evo...
[EN] The hydrogen evolution reaction (HER) is the cathodic process in many important electrochemical...
In this study, Ni-Mo alloy coatings were electrochemically deposited on a copper plate in citrate so...
The hydrogen evolution reaction on the electrodeposited Ni-Mo alloy coatings, as well as their elect...
Platinum is the electrode material with the highest catalytic activity for the hydrogen evolution re...
Ni-Mo alloys and compounds are considered as highly active catalysts for the hydrogen evolution reac...
The given research was driven by prospects to design Mo-rich coatings with iron group metals electro...
The given research was driven by prospects to design Mo-rich coatings with iron group metals electro...
Hydrogen production via electrolysis of water from alkaline aqueous electrolytes is a well-establish...
The given research was driven by prospects to design Mo-rich coatings with iron group metals electro...
Objective of this work was to investigate the electrocatalytic efficiency using quasi-potentiostatic...
Ni-Fe-Mo alloys have been electroplated by using suitable bath solution and plating conditions. SEM ...
Objective of this work was to investigate the electrocatalytic efficiency using quasi-potentiostatic...
Nickel molybdenum NiMo alloys can be a possible alternative to platinum as hydrogen evolution reac...
Nickel molybdenum NiMo alloys can be a possible alternative to platinum as hydrogen evolution reac...
As a result of research on the non-noble metal-based composite electrocatalysts for the hydrogen evo...
[EN] The hydrogen evolution reaction (HER) is the cathodic process in many important electrochemical...