A recursion relation is formulated for the Green's function for calculating the effective electron coupling in bridge-assisted electronic transfer systems, within the framework of the tight-binding Hamiltonian. The recursion expression relates the Green's function of a chain bridge to that of the bridge that is one unit less. It is applicable regardless of the number of orbitals per unit. This method is applied to the system of a ferrocenylcarboxy-terminated alkanethiol on the Au(111) surface. At larger numbers of bridge units, the effective coupling strength shows an exponential decay as the number of methylene(–CH2–) units increases. This sequential formalism shows numerical stability even for a very long chain bridge and, since it uses o...
The function of solvent in facilitating long-range coupling in donor/bridge/acceptor complexes is no...
Comparison of donor-acceptor electronic couplings calculated within two-state and three-state models...
Electron transfer reactions at semiconductor/liquid interfaces are studied using the Fermi Golden ru...
A recursion relation is formulated for the Green's function for calculating the effective electron c...
Electron-transfer rate constants were measured for a variety of molecular systems. Therate constant ...
The transition flux formula for the coupling matrix element of long-distance electron transfer react...
Two independent methods are presented for the nonperturbative calculation of the electronic coupling...
Fermi's golden rule is used to develop relationships between rate constants for electron transfer in...
The recently developed generalized Mulliken-Hush approach for the calculation of the electronic coup...
The rate constant of long-range electron transfer is proportional to $|V_{\ab{DA}}|^{2}$, where $V_{...
In this article, four methods to calculate charge transfer integrals in the context of bridge-mediat...
A simple diagnostic is developed for the purpose of determining when a third state must be considere...
One commonly thinks that two reactants need to come very close to one another in order for a chemica...
A computational strategy to analyze the dynamics of coherent electron transfer processes in bridged ...
Recent investigations have shed much light on the nuclear and electronic factors that control the ra...
The function of solvent in facilitating long-range coupling in donor/bridge/acceptor complexes is no...
Comparison of donor-acceptor electronic couplings calculated within two-state and three-state models...
Electron transfer reactions at semiconductor/liquid interfaces are studied using the Fermi Golden ru...
A recursion relation is formulated for the Green's function for calculating the effective electron c...
Electron-transfer rate constants were measured for a variety of molecular systems. Therate constant ...
The transition flux formula for the coupling matrix element of long-distance electron transfer react...
Two independent methods are presented for the nonperturbative calculation of the electronic coupling...
Fermi's golden rule is used to develop relationships between rate constants for electron transfer in...
The recently developed generalized Mulliken-Hush approach for the calculation of the electronic coup...
The rate constant of long-range electron transfer is proportional to $|V_{\ab{DA}}|^{2}$, where $V_{...
In this article, four methods to calculate charge transfer integrals in the context of bridge-mediat...
A simple diagnostic is developed for the purpose of determining when a third state must be considere...
One commonly thinks that two reactants need to come very close to one another in order for a chemica...
A computational strategy to analyze the dynamics of coherent electron transfer processes in bridged ...
Recent investigations have shed much light on the nuclear and electronic factors that control the ra...
The function of solvent in facilitating long-range coupling in donor/bridge/acceptor complexes is no...
Comparison of donor-acceptor electronic couplings calculated within two-state and three-state models...
Electron transfer reactions at semiconductor/liquid interfaces are studied using the Fermi Golden ru...