Title of article
Quantum effects in adiabatic electrochemical electron-transfer reactions Original Research Article
Author/Authors
M.T.M. Koper، نويسنده , , J.-H. Mohr، نويسنده , , W. Schmickler، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 1997
Pages
20
From page
95
To page
114
Abstract
The role of nuclear tunneling in adiabatic electrochemical electron-transfer reactions is studied by applying the WKB approximation and the Quantum Kramers Theory to the ground-state potential energy surface calculated from an extended Anderson-Newns Hamiltonian. Reorganization of both solvent and ligand modes is considered. In the limit of vanishing electronic coupling analytical formulas are obtained for the temperature dependence of the activation parameters, which are valid over a practically unlimited temperature range. In the limit of high temperature, they are shown to be identical to expression derived from the non-adiabatic Levich-Dogonadze theory. The effect of friction and non-vanishing electronic coupling are studied and both are found to suppress the relative contribution of the nuclear tunneling to the overall reaction rate.
Journal title
Chemical Physics
Serial Year
1997
Journal title
Chemical Physics
Record number
1058097
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