The oxygen evolution and recombination kinetics in Ni-based battery systems have been investigated under temperature-controlled, steady-state, overcharging conditions within a temperature range of 0-60°C. Theoretical relationships for both reactions have been derived. The mathematical relationships have been confirmed by experiments on sealed rechargeable NiCd batteries. Under steady-state overcharging conditions, the Cd electrode potential was proven to be constant, thereby significantly reducing the complexity of the interpretation of the results. The oxygen evolution reaction was found to be a two-step process at the Ni electrode: two linear Tafel dependencies were found at low and high currents, separated by a transition region at inter...
The term recombinat ion eff iciency has been appl ied throughout the l i terature to sealed, lead-ac...
A mathematical model for the charge and discharge of a sealed nickel-cadmium (Ni-Cd) battery is pres...
In this paper we present a mathematical model of a sealed nickel-cadmium cell that includes proton d...
The oxygen evolution and recombination kinetics in Ni-based battery systems have been investigated u...
The kinetics of the oxygen evolution reaction (oer) has been investigated in commercial NiMH batteri...
The hydrogen evolution and oxidation kinetics in NiMH batteries have been investigated under tempera...
Based on the concept of a defined sealed rechargeable NiCd battery, the mathematics of the various e...
Extensions are presented for a previously published (1) mathematical model of a nickel-cadmium (Ni-C...
Increasing dependence on rechargeable batteries for energy storage calls for the improvement of ener...
2Abstract—A combined numerical and experimental study of the discharge and charge of nickel-metal hy...
Fundamental physical and (electro) chemical principles of rechargeable battery operation form the ba...
The term recombinat ion eff iciency has been appl ied throughout the l i terature to sealed, lead-ac...
A mathematical model for the charge and discharge of a sealed nickel-cadmium (Ni-Cd) battery is pres...
In this paper we present a mathematical model of a sealed nickel-cadmium cell that includes proton d...
The oxygen evolution and recombination kinetics in Ni-based battery systems have been investigated u...
The kinetics of the oxygen evolution reaction (oer) has been investigated in commercial NiMH batteri...
The hydrogen evolution and oxidation kinetics in NiMH batteries have been investigated under tempera...
Based on the concept of a defined sealed rechargeable NiCd battery, the mathematics of the various e...
Extensions are presented for a previously published (1) mathematical model of a nickel-cadmium (Ni-C...
Increasing dependence on rechargeable batteries for energy storage calls for the improvement of ener...
2Abstract—A combined numerical and experimental study of the discharge and charge of nickel-metal hy...
Fundamental physical and (electro) chemical principles of rechargeable battery operation form the ba...
The term recombinat ion eff iciency has been appl ied throughout the l i terature to sealed, lead-ac...
A mathematical model for the charge and discharge of a sealed nickel-cadmium (Ni-Cd) battery is pres...
In this paper we present a mathematical model of a sealed nickel-cadmium cell that includes proton d...