The effect of different alkali metal cations on the oxygen evolution activity and battery capacity of nickel electrodes has recently been studied in low concentration alkali hydroxide electrolytes. As high concentration hydroxide electrolytes are favored in applications due to their high conductivity, we investigate if the cation effects observed in low concentration electrolytes translate to more industrially relevant conditions for both alkaline water electrolysis and nickel iron batteries. We investigate the alkali metal cation effect on the electrochemical properties of nickel electrodes in highly concentrated hydroxide electrolytes by adding Li+, Na+, Cs+ and Rb+ cations to a 6.5 M KOH electrolyte, while keeping the hydroxide concentra...
Alkaline electrolysis is the long-established technology for water splitting to produce hydrogen and...
The behavior of individual positive and negative lectrodes of the sintered-plate nickel-cadmium batt...
The influence of the electrolyte alkaline ions, potassium, lithium, and sodium, on the efficiency of...
Nickel hydroxide is used as an active material in positive electrodes of rechargeable alkaline batt...
Nickel hydroxide electrodes are widely used as cathodes in alkaline batteries. Recently, many applic...
The influence of Co, Cd, and Zn ions on the voltammetric behavior of the nickel hydroxide lectrode i...
The feasibility of utilizing disordered Ni-based metal hydroxide, as both the anode and the cathode ...
Efficient oxygen evolution reaction (OER) electrocatalysts are pivotal for sustainable fuel producti...
A number of nickel based materials are investigated as potential oxygen evolution catalysts under co...
Efficient oxygen evolution reaction (OER) electrocatalysts are pivotal for sustainable fuel producti...
Iron-doped, nickel oxyhydroxide (Ni(Fe)OOH) is one of the best catalysts for the oxygen evolution ...
The influence of Co, Cd, and Zn ions on the voltammetric behavior of the nickel hydroxide electrode ...
Commercial alkaline accumulators with positive electrode based on nickel hydroxide generally compris...
To improve the high-temperature performance of the nickel hydroxide electrodes in nickel-metal hydri...
Nickel hydroxides have been used as the active material in the positive electrodes of several alkali...
Alkaline electrolysis is the long-established technology for water splitting to produce hydrogen and...
The behavior of individual positive and negative lectrodes of the sintered-plate nickel-cadmium batt...
The influence of the electrolyte alkaline ions, potassium, lithium, and sodium, on the efficiency of...
Nickel hydroxide is used as an active material in positive electrodes of rechargeable alkaline batt...
Nickel hydroxide electrodes are widely used as cathodes in alkaline batteries. Recently, many applic...
The influence of Co, Cd, and Zn ions on the voltammetric behavior of the nickel hydroxide lectrode i...
The feasibility of utilizing disordered Ni-based metal hydroxide, as both the anode and the cathode ...
Efficient oxygen evolution reaction (OER) electrocatalysts are pivotal for sustainable fuel producti...
A number of nickel based materials are investigated as potential oxygen evolution catalysts under co...
Efficient oxygen evolution reaction (OER) electrocatalysts are pivotal for sustainable fuel producti...
Iron-doped, nickel oxyhydroxide (Ni(Fe)OOH) is one of the best catalysts for the oxygen evolution ...
The influence of Co, Cd, and Zn ions on the voltammetric behavior of the nickel hydroxide electrode ...
Commercial alkaline accumulators with positive electrode based on nickel hydroxide generally compris...
To improve the high-temperature performance of the nickel hydroxide electrodes in nickel-metal hydri...
Nickel hydroxides have been used as the active material in the positive electrodes of several alkali...
Alkaline electrolysis is the long-established technology for water splitting to produce hydrogen and...
The behavior of individual positive and negative lectrodes of the sintered-plate nickel-cadmium batt...
The influence of the electrolyte alkaline ions, potassium, lithium, and sodium, on the efficiency of...