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Accounts of Chemical Research|October 28, 2010
Understanding hydrogen atom transfer: from bond strengths to Marcus theoryJames M MayerInorganic Chemistry|March 29, 2005
Oxidations of NADH analogues by cis-[RuIV(bpy)2(py)(O)]2+ occur by hydrogen-atom transfer rather than by hydride transferTakashi Matsuo, James M MayerJournal of the American Chemical Society|October 10, 2008
Hydrogen atom transfer reactions of a ruthenium imidazole complex: hydrogen tunneling and the applicability of the Marcus cross relationAdam Wu, James M MayerChemical Communications (Cambridge, England)|July 30, 2016
(Hydro)peroxide ligands on colloidal cerium oxide nanoparticlesDelina Damatov, James M MayerThe Journal of Organic Chemistry|June 27, 1997
Oxidation of Isopropylcyclopropane by Chromyl Chloride: Ring-Opened Products Support a Hydrogen Atom Abstraction MechanismKun Wang, James M. MayerJournal of the American Chemical Society|September 13, 2019
Electrochemically Determined O-H Bond Dissociation Free Energies of NiO Electrodes Predict Proton-Coupled Electron Transfer ReactivityCatherine F Wise, James M MayerJournal of the American Chemical Society|July 3, 2009
Concerted proton-electron transfer in a ruthenium terpyridyl-benzoate system with a large separation between the redox and basic sitesVirginia W Manner, James M MayerJournal of the American Chemical Society|October 2, 2003
Slow hydrogen atom self-exchange between Os(IV) anilide and Os(III) aniline complexes: relationships with electron and proton transfer self-exchangeJake D Soper, James M MayerChemical Science|April 15, 2014
Radical Reactivity of the Fe(III)/(II) Tetramesitylporphyrin Couple: Hydrogen Atom Transfer, Oxyl Radical Dissociation, and Catalytic Disproportionation of a HydroxylamineThomas R Porter, James M MayerBiochimica Et Biophysica Acta|April 22, 2004
Thermodynamics and kinetics of proton-coupled electron transfer: stepwise vs. concerted pathwaysJames M Mayer, Ian J RhilePageof 21