Using field-theoretic techniques, we develop a molecularly based dipolar self-consistent-field theory (DSCFT) for charge solvation in pure solvents under equilibrium and nonequilibrium conditions and apply it to the reorganization energy of electron transferreactions. The DSCFT uses a set of molecular parameters, such as the solvent molecule’s permanent dipole moment and polarizability, thus avoiding approximations that are inherent in treating the solvent as a linear dielectric medium. A simple, analytical expression for the free energy is obtained in terms of the equilibrium and nonequilibrium electrostatic potential profiles and electric susceptibilities, which are obtained by solving a set of self-consistent equations. With no adjustabl...
Molecular dynamics simulations of electron and ion transfer reactions near a smooth surface are pres...
A microscopic theory for the rate of nonadiabatic electron transfer is developed and its relation to...
We report microscopic calculations of free energies and entropies for intramolecular electron transf...
Using statistical-field techniques, we develop a molecular-based dipolar self-consistent-field theor...
In a previous paper (S Fletcher, J Solid State Electrochem 11:965 (2007)) a non- Marcus theory of el...
International audienceBeyond the dielectric continuum description initiated by Marcus theory, the st...
Abstract: Considering the influences of electrostatic potential upon the change of solute charge di...
The mechanism for electron transfer is discussed in terms of an atomic motion on a potential-energy ...
We propose a new model for the elementary act of electron transfer between two species in solution. ...
This thesis focuses on the quantum effects of electron transfer reactions in solutions and solvation...
Theories are presented for calculating the solvent reorganization energy and the free energy change ...
Electron transfer reactions at electrochemical interfaces play a critical role in a wide range of ca...
Molecular dynamics simulations of electron and ion transfer reactions near a smooth surface are pres...
A microscopic theory for the rate of nonadiabatic electron transfer is developed and its relation to...
We report microscopic calculations of free energies and entropies for intramolecular electron transf...
Using statistical-field techniques, we develop a molecular-based dipolar self-consistent-field theor...
In a previous paper (S Fletcher, J Solid State Electrochem 11:965 (2007)) a non- Marcus theory of el...
International audienceBeyond the dielectric continuum description initiated by Marcus theory, the st...
Abstract: Considering the influences of electrostatic potential upon the change of solute charge di...
The mechanism for electron transfer is discussed in terms of an atomic motion on a potential-energy ...
We propose a new model for the elementary act of electron transfer between two species in solution. ...
This thesis focuses on the quantum effects of electron transfer reactions in solutions and solvation...
Theories are presented for calculating the solvent reorganization energy and the free energy change ...
Electron transfer reactions at electrochemical interfaces play a critical role in a wide range of ca...
Molecular dynamics simulations of electron and ion transfer reactions near a smooth surface are pres...
A microscopic theory for the rate of nonadiabatic electron transfer is developed and its relation to...
We report microscopic calculations of free energies and entropies for intramolecular electron transf...