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Steering electrons on moving pathways.

Publication ,  Journal Article
Beratan, DN; Skourtis, SS; Balabin, IA; Balaeff, A; Keinan, S; Venkatramani, R; Xiao, D
Published in: Accounts of chemical research
October 2009

Electron transfer (ET) reactions provide a nexus among chemistry, biochemistry, and physics. These reactions underpin the "power plants" and "power grids" of bioenergetics, and they challenge us to understand how evolution manipulates structure to control ET kinetics. Ball-and-stick models for the machinery of electron transfer, however, fail to capture the rich electronic and nuclear dynamics of ET molecules: these static representations disguise, for example, the range of thermally accessible molecular conformations. The influence of structural fluctuations on electron-transfer kinetics is amplified by the exponential decay of electron tunneling probabilities with distance, as well as the delicate interference among coupling pathways. Fluctuations in the surrounding medium can also switch transport between coherent and incoherent ET mechanisms--and may gate ET so that its kinetics is limited by conformational interconversion times, rather than by the intrinsic ET time scale. Moreover, preparation of a charge-polarized donor state or of a donor state with linear or angular momentum can have profound dynamical and kinetic consequences. In this Account, we establish a vocabulary to describe how the conformational ensemble and the prepared donor state influence ET kinetics in macromolecules. This framework is helping to unravel the richness of functional biological ET pathways, which have evolved within fluctuating macromolecular structures. The conceptual framework for describing nonadiabatic ET seems disarmingly simple: compute the ensemble-averaged (mean-squared) donor-acceptor (DA) tunneling interaction,

Duke Scholars

Published In

Accounts of chemical research

DOI

EISSN

1520-4898

ISSN

0001-4842

Publication Date

October 2009

Volume

42

Issue

10

Start / End Page

1669 / 1678

Related Subject Headings

  • Water
  • Temperature
  • Nucleic Acids
  • Macromolecular Substances
  • Kinetics
  • General Chemistry
  • Electron Transport
  • 34 Chemical sciences
  • 03 Chemical Sciences
 

Citation

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Beratan, D. N., Skourtis, S. S., Balabin, I. A., Balaeff, A., Keinan, S., Venkatramani, R., & Xiao, D. (2009). Steering electrons on moving pathways. Accounts of Chemical Research, 42(10), 1669–1678. https://doi.org/10.1021/ar900123t
Beratan, David N., Spiros S. Skourtis, Ilya A. Balabin, Alexander Balaeff, Shahar Keinan, Ravindra Venkatramani, and Dequan Xiao. “Steering electrons on moving pathways.Accounts of Chemical Research 42, no. 10 (October 2009): 1669–78. https://doi.org/10.1021/ar900123t.
Beratan DN, Skourtis SS, Balabin IA, Balaeff A, Keinan S, Venkatramani R, et al. Steering electrons on moving pathways. Accounts of chemical research. 2009 Oct;42(10):1669–78.
Beratan, David N., et al. “Steering electrons on moving pathways.Accounts of Chemical Research, vol. 42, no. 10, Oct. 2009, pp. 1669–78. Epmc, doi:10.1021/ar900123t.
Beratan DN, Skourtis SS, Balabin IA, Balaeff A, Keinan S, Venkatramani R, Xiao D. Steering electrons on moving pathways. Accounts of chemical research. 2009 Oct;42(10):1669–1678.
Journal cover image

Published In

Accounts of chemical research

DOI

EISSN

1520-4898

ISSN

0001-4842

Publication Date

October 2009

Volume

42

Issue

10

Start / End Page

1669 / 1678

Related Subject Headings

  • Water
  • Temperature
  • Nucleic Acids
  • Macromolecular Substances
  • Kinetics
  • General Chemistry
  • Electron Transport
  • 34 Chemical sciences
  • 03 Chemical Sciences