Interfacial charge-transfer rate constants have been measured for n-type Si electrodes in contact with a series of viologen-based redox couples in methanol through analyses of the behavior of these junctions with respect to their current density versus potential and differential capacitance versus potential properties. The data allow evaluation of the maximum rate constant (and therefore the electronic coupling) for majority carriers in the solid as well as of the dependence of the rate constant on the driving force for transfer of delocalized electrons from the n-Si semiconducting electrode into the localized molecular redox species in the solution phase. The data are in good agreement with existing models of this interfacial elect...
Although a variety of heterogeneous rate constant data is now available at metal electrodes (1, 2),...
Although a variety of heterogeneous rate constant data is now available at metal electrodes (1, 2),...
Semiconductor/liquid contacts provide very efficient systems for converting sunlight into electrical...
Interfacial charge-transfer rate constants have been measured for n-type Si electrodes in contact w...
Theoretical expressions for the charge-transfer rate constant at a semiconductor/liquid junction hav...
Theoretical and experimental investigations of charge-carrier dynamics at semiconductor/liquid inte...
This article describes theoretical treatments and experimental data focused on the rates of interfac...
This article describes theoretical treatments and experimental data focused on the rates of interfac...
This article describes theoretical treatments and experimental data focused on the rates of interfac...
Fermi’s Golden Rule has previously been used to formulate rate expressions for transfer of delocaliz...
Fermi’s Golden Rule has previously been used to formulate rate expressions for transfer of delocaliz...
Fermi’s Golden Rule has previously been used to formulate rate expressions for transfer of delocaliz...
Fermi’s Golden Rule has previously been used to formulate rate expressions for transfer of delocaliz...
The interfacial energetic and kinetics behavior of n-ZnO/H_2O contacts have been determined for a se...
The interfacial energetic and kinetics behavior of n-ZnO/H_2O contacts have been determined for a se...
Although a variety of heterogeneous rate constant data is now available at metal electrodes (1, 2),...
Although a variety of heterogeneous rate constant data is now available at metal electrodes (1, 2),...
Semiconductor/liquid contacts provide very efficient systems for converting sunlight into electrical...
Interfacial charge-transfer rate constants have been measured for n-type Si electrodes in contact w...
Theoretical expressions for the charge-transfer rate constant at a semiconductor/liquid junction hav...
Theoretical and experimental investigations of charge-carrier dynamics at semiconductor/liquid inte...
This article describes theoretical treatments and experimental data focused on the rates of interfac...
This article describes theoretical treatments and experimental data focused on the rates of interfac...
This article describes theoretical treatments and experimental data focused on the rates of interfac...
Fermi’s Golden Rule has previously been used to formulate rate expressions for transfer of delocaliz...
Fermi’s Golden Rule has previously been used to formulate rate expressions for transfer of delocaliz...
Fermi’s Golden Rule has previously been used to formulate rate expressions for transfer of delocaliz...
Fermi’s Golden Rule has previously been used to formulate rate expressions for transfer of delocaliz...
The interfacial energetic and kinetics behavior of n-ZnO/H_2O contacts have been determined for a se...
The interfacial energetic and kinetics behavior of n-ZnO/H_2O contacts have been determined for a se...
Although a variety of heterogeneous rate constant data is now available at metal electrodes (1, 2),...
Although a variety of heterogeneous rate constant data is now available at metal electrodes (1, 2),...
Semiconductor/liquid contacts provide very efficient systems for converting sunlight into electrical...