Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5394885 | Computational and Theoretical Chemistry | 2011 | 8 Pages |
Abstract
A first principles study of electronic tunneling along the chain of seven Fe/S clusters in respiratory complex I, a key enzyme in the respiratory electron transport chain, is described. The broken-symmetry states of the Fe/S metal clusters calculated at both DFT and semi-empirical ZINDO levels were utilized to examine both the extremely weak electronic couplings between Fe/S clusters and the tunneling pathways, which provide a detailed atomistic-level description of the charge transfer process in the protein. One-electron tunneling approximation was found to hold within a reasonable accuracy, with only a moderate induced polarization of the core electrons. The method is demonstrated to be able to calculate accurately the coupling matrix elements as small as 10â4Â cmâ1. A distinct signature of the wave properties of electrons is observed as quantum interferences of multiple tunneling pathways.
Related Topics
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Physical and Theoretical Chemistry
Authors
Tomoyuki Hayashi, Alexei A. Stuchebrukhov,