Electron transfer via superexchange: A time-dependent approach

Matthew D. Todd, Abraham Nitzan, Mark A Ratner

Research output: Contribution to journalArticle

57 Citations (Scopus)

Abstract

The superexchange model for the facilitation of electron transfer between donors and acceptors by means of intermediate bridges is recast in a time-dependent framework. We develop a model in which three electronic states (donor, bridge, and acceptor) are considered and vibronic levels are included on the donor and acceptor. An explicitly time-dependent formulation, in which the golden rule is rewritten in the form of an integral over a time-dependent correlation function, is used to calculate the rate. Simple example calculations for model three-site systems are given; inverted region behavior and reasonable values are obtained. The model is a general one and should be useful for interpretation of superexchange-assisted transfer based on experimental observations of frequencies and displacements (such as the information that can be obtained with Raman spectroscopy). The model can be generalized to include effects such as dephasing, relaxation, solvent dynamics, and anharmonicities, as well as breakdown of the Condon approximation.

Original languageEnglish
Pages (from-to)29-33
Number of pages5
JournalJournal of Physical Chemistry
Volume97
Issue number1
Publication statusPublished - 1993

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electron transfer
Electrons
Electronic states
Raman spectroscopy
breakdown
formulations
approximation
electronics

ASJC Scopus subject areas

  • Physical and Theoretical Chemistry

Cite this

Electron transfer via superexchange : A time-dependent approach. / Todd, Matthew D.; Nitzan, Abraham; Ratner, Mark A.

In: Journal of Physical Chemistry, Vol. 97, No. 1, 1993, p. 29-33.

Research output: Contribution to journalArticle

Todd, Matthew D. ; Nitzan, Abraham ; Ratner, Mark A. / Electron transfer via superexchange : A time-dependent approach. In: Journal of Physical Chemistry. 1993 ; Vol. 97, No. 1. pp. 29-33.
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