The hydrogen evolution reaction (HER) of nanocrystalline Ni–Mo–B alloys was investigated in alkaline solution in comparison with the corresponding crystalline materials and polycrystalline nickel. The nanocrystalline alloys, prepared by melt spinning, were investigated towards the HER in 1 M KOH solution at 298 K. An electrochemical activation procedure (cyclic reduction-oxidation pre-treatment) was used to enhance the apparent HER activity. In case of the crystalline Ni–Mo–B master alloys the origin of the activity can mainly be attributed to an increase of the real surface area (roughening) caused by a dissolution of Mo-containing phases. Interestingly, a roughening of nanocrystalline Ni–Mo–B alloys did not occur, probably, because of the...
Hydrogen production via electrolysis of water from alkaline aqueous electrolytes is a well-establish...
EFFECT OF CRYSTALLINITY TO OVERPOTENTIAL ON Ni3Fe ALLOY AS ELECTROCATALYST IN HYDROGEN EVOLUTION REA...
In this paper, NiMo coatings were electrochemically deposited on a copper electrode (Cu/NiMo) and on...
Nickel\u2013dysprosium (Ni\u2013Dy) and nickel\u2013samarium (Ni\u2013Sm) alloys with 5 and 10 at% o...
Ni-Mo alloys and compounds are considered as highly active catalysts for the hydrogen evolution reac...
Alkaline water electrolysis offers the use of low-cost active materials and ancillary components, ma...
Binary Co\u2013W crystalline alloys, Co95W5, Co90W10, Co85W15, Co80W20 and Co70W30 (atomic %) were i...
The given research was driven by prospects to design Mo-rich coatings with iron group metals electro...
Earth-abundant metals are attractive alternatives to the noble metal composite catalysts that are us...
Platinum is the electrode material with the highest catalytic activity for the hydrogen evolution re...
Earth-abundant metals are attractive alternatives to the noble metal composite catalysts that are us...
Alkaline water electrolysis driven by renewable energy is a promising technology for green hydrogen ...
Binary CoeW crystalline alloys, Co95W5, Co90W10, Co85W15, Co80W20 and Co70W30 (atomic %) were invest...
The given research was driven by prospects to design Mo-rich coatings with iron group metals electro...
In view of alkaline water electrolysis, the activities for the hydrogen evolution reaction of nanocr...
Hydrogen production via electrolysis of water from alkaline aqueous electrolytes is a well-establish...
EFFECT OF CRYSTALLINITY TO OVERPOTENTIAL ON Ni3Fe ALLOY AS ELECTROCATALYST IN HYDROGEN EVOLUTION REA...
In this paper, NiMo coatings were electrochemically deposited on a copper electrode (Cu/NiMo) and on...
Nickel\u2013dysprosium (Ni\u2013Dy) and nickel\u2013samarium (Ni\u2013Sm) alloys with 5 and 10 at% o...
Ni-Mo alloys and compounds are considered as highly active catalysts for the hydrogen evolution reac...
Alkaline water electrolysis offers the use of low-cost active materials and ancillary components, ma...
Binary Co\u2013W crystalline alloys, Co95W5, Co90W10, Co85W15, Co80W20 and Co70W30 (atomic %) were i...
The given research was driven by prospects to design Mo-rich coatings with iron group metals electro...
Earth-abundant metals are attractive alternatives to the noble metal composite catalysts that are us...
Platinum is the electrode material with the highest catalytic activity for the hydrogen evolution re...
Earth-abundant metals are attractive alternatives to the noble metal composite catalysts that are us...
Alkaline water electrolysis driven by renewable energy is a promising technology for green hydrogen ...
Binary CoeW crystalline alloys, Co95W5, Co90W10, Co85W15, Co80W20 and Co70W30 (atomic %) were invest...
The given research was driven by prospects to design Mo-rich coatings with iron group metals electro...
In view of alkaline water electrolysis, the activities for the hydrogen evolution reaction of nanocr...
Hydrogen production via electrolysis of water from alkaline aqueous electrolytes is a well-establish...
EFFECT OF CRYSTALLINITY TO OVERPOTENTIAL ON Ni3Fe ALLOY AS ELECTROCATALYST IN HYDROGEN EVOLUTION REA...
In this paper, NiMo coatings were electrochemically deposited on a copper electrode (Cu/NiMo) and on...