The Journal of Physical Chemistry B · 2006 · 75 citations · 40 references
EngineeringElectrode-electrolyte InterfaceChemistryTheoretical ElectrochemistryNanoelectronicsElectrochemical InterfaceElectrode Reaction MechanismMaterials ScienceElectrical EngineeringRedox CoupleFerrocenium/ferrocene Redox CoupleMolecular ElectrochemistrySurface ElectrochemistryGraphite ElectrodesElectrical PropertyElectrochemistryApplied PhysicsFundamental ElectrochemistryGrapheneRate ConstantsElectrical Insulation
The Fermi golden rule formalism has been used to derive the rate constant for interfacial electron transfer from a semimetallic electrode, such as highly ordered pyrolytic graphite (HOPG), to a redox couple in solution. A simple expression is presented that semiquantitatively relates the electron-transfer rate constant at a semimetallic electrode to that at a metallic electrode. The approach allows for the estimation of the value of the rate constant for interfacial charge transfer to nonadsorbing outer-sphere redox species at semimetallic electrodes. Rate constants for interfacial electron transfer for a variety of one-electron redox couples at semimetallic electrodes have been calculated relative to the rate constant of the ferrocenium/ferrocene redox couple at a gold electrode. Good agreement is found, in general, between the calculated and observed rate constants.
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Rapid Electron Tunneling Through Oligophenylenevinylene Bridges
Hadley D. Sikes, John F. Smalley, Stephen P. Dudek et al. · Science · 2001 · 329 citations
John F. Smalley, Harry O. Finklea, Christopher E. D. Chidsey et al. · Journal of the American Chemical Society · 2003 · 305 citations
Engineering, Chemistry, Heterogeneous Electron-transfer Kinetics +17