Nickel electrodes are widely used in industrial water electrolysis cells for electrochemical production of hydrogen. To avoid extensive deactivation problems and enhance the efficiency of the electrolyser cathode, in this work in situ activation is proposed using ionic activator (i.a.) based on combination of three d-metals: Zn, Co and Mo. Polarization curves, obtained at different temperatures (303-343 K), reveal that the addition of ZnCoMo based La. did not change reaction mechanism when compared to the HER mechanism on nickel cathode in standard electrolyte. The electrochemical impedance spectroscopy measurements were employed to further investigate the origin of obtained electrocatalytic effect on the HER. The morphology of obtained coa...
Alkaline water electrolysis is one of the easiest methods for hydrogen production. Simplicity and us...
Hydrogen production via electrolysis of water from alkaline aqueous electrolytes is a well-establish...
The preparation of low-cost, simple, and scalable electrodes is crucial for the commercialization of...
Nickel electrodes are widely used in industrial water electrolysis cells for electrochemical product...
This paper presents investigations on the influence of in-situ ionic activation using combination of...
This paper presents investigations on the influence of in-situ ionic activation using combination of...
Platinum is the electrode material with the highest catalytic activity for the hydrogen evolution re...
In this paper we discussed various factors contributing to the improvement of hydrogen evolution rea...
In this paper we discussed various factors contributing to the improvement of hydrogen evolution rea...
In this work, nickel (Ni) cathode for hydrogen evolution reaction (HER) in alkaline medium, was modi...
Hydrogen is considered to be the most promising candidate as a future energy carrier. One of the mos...
Hydrogen is considered to be the most promising candidate as a future energy carrier. One of the mos...
In this manuscript we have presented the results of the use of ternary ionic activator in the alkali...
In this manuscript we have presented the results of the use of ternary ionic activator in the alkali...
Alkaline water electrolysis is one of the easiest methods for hydrogen production. Simplicity and us...
Alkaline water electrolysis is one of the easiest methods for hydrogen production. Simplicity and us...
Hydrogen production via electrolysis of water from alkaline aqueous electrolytes is a well-establish...
The preparation of low-cost, simple, and scalable electrodes is crucial for the commercialization of...
Nickel electrodes are widely used in industrial water electrolysis cells for electrochemical product...
This paper presents investigations on the influence of in-situ ionic activation using combination of...
This paper presents investigations on the influence of in-situ ionic activation using combination of...
Platinum is the electrode material with the highest catalytic activity for the hydrogen evolution re...
In this paper we discussed various factors contributing to the improvement of hydrogen evolution rea...
In this paper we discussed various factors contributing to the improvement of hydrogen evolution rea...
In this work, nickel (Ni) cathode for hydrogen evolution reaction (HER) in alkaline medium, was modi...
Hydrogen is considered to be the most promising candidate as a future energy carrier. One of the mos...
Hydrogen is considered to be the most promising candidate as a future energy carrier. One of the mos...
In this manuscript we have presented the results of the use of ternary ionic activator in the alkali...
In this manuscript we have presented the results of the use of ternary ionic activator in the alkali...
Alkaline water electrolysis is one of the easiest methods for hydrogen production. Simplicity and us...
Alkaline water electrolysis is one of the easiest methods for hydrogen production. Simplicity and us...
Hydrogen production via electrolysis of water from alkaline aqueous electrolytes is a well-establish...
The preparation of low-cost, simple, and scalable electrodes is crucial for the commercialization of...