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Use of modern electron transfer theories to determine electronic coupling matrix elements in intramolecular systems

Publication ,  Journal Article
Kumar, K; Kurnikov, IV; Beratan, DN; Waldeck, DH; Zimmt, MB
Published in: Journal of Physical Chemistry A
July 9, 1998

The dependence of the donor/acceptor electronic coupling on the topology of donor-bridge-acceptor (DBA) molecules is probed experimentally and theoretically. The temperature dependence of photoinduced electron-transfer rate constants is analyzed with a semiclassical electron-transfer model to extract the donor/acceptor electronic coupling matrix elements |V| and the low-frequency reorganization energy at 295 K, λ0(295 K), for four rigid DBA molecules. The sensitivity of the electronic coupling |V| to the models and parameters used to fit the data are extensively investigated. The treatment of the low-frequency reorganization energy's temperature dependence has a significant impact on the analysis. The identity of the principal coupling pathways is determined for molecular linkages that propagate symmetry allowed donor/acceptor interactions and molecular linkages that propagate symmetry forbidden donor/acceptor interactions. For the symmetry forbidden case, these analyses demonstrate that solvent molecules provide the dominant coupling pathway in the nine-bond bridge, C-shaped molecule 2 but do not significantly influence |V| across the seven-bond, linear bridge in 1.

Duke Scholars

Published In

Journal of Physical Chemistry A

DOI

ISSN

1089-5639

Publication Date

July 9, 1998

Volume

102

Issue

28

Start / End Page

5529 / 5541

Related Subject Headings

  • 5102 Atomic, molecular and optical physics
  • 3407 Theoretical and computational chemistry
  • 3406 Physical chemistry
  • 0307 Theoretical and Computational Chemistry
  • 0306 Physical Chemistry (incl. Structural)
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
 

Citation

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Kumar, K., Kurnikov, I. V., Beratan, D. N., Waldeck, D. H., & Zimmt, M. B. (1998). Use of modern electron transfer theories to determine electronic coupling matrix elements in intramolecular systems. Journal of Physical Chemistry A, 102(28), 5529–5541. https://doi.org/10.1021/jp980113t
Kumar, K., I. V. Kurnikov, D. N. Beratan, D. H. Waldeck, and M. B. Zimmt. “Use of modern electron transfer theories to determine electronic coupling matrix elements in intramolecular systems.” Journal of Physical Chemistry A 102, no. 28 (July 9, 1998): 5529–41. https://doi.org/10.1021/jp980113t.
Kumar K, Kurnikov IV, Beratan DN, Waldeck DH, Zimmt MB. Use of modern electron transfer theories to determine electronic coupling matrix elements in intramolecular systems. Journal of Physical Chemistry A. 1998 Jul 9;102(28):5529–41.
Kumar, K., et al. “Use of modern electron transfer theories to determine electronic coupling matrix elements in intramolecular systems.” Journal of Physical Chemistry A, vol. 102, no. 28, July 1998, pp. 5529–41. Scopus, doi:10.1021/jp980113t.
Kumar K, Kurnikov IV, Beratan DN, Waldeck DH, Zimmt MB. Use of modern electron transfer theories to determine electronic coupling matrix elements in intramolecular systems. Journal of Physical Chemistry A. 1998 Jul 9;102(28):5529–5541.
Journal cover image

Published In

Journal of Physical Chemistry A

DOI

ISSN

1089-5639

Publication Date

July 9, 1998

Volume

102

Issue

28

Start / End Page

5529 / 5541

Related Subject Headings

  • 5102 Atomic, molecular and optical physics
  • 3407 Theoretical and computational chemistry
  • 3406 Physical chemistry
  • 0307 Theoretical and Computational Chemistry
  • 0306 Physical Chemistry (incl. Structural)
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics