Publications

183. Schimpf, A.; Gunthardt, C.; Rinehart, J.; Mayer, J.M.; Gamelin, D.R.*
Controlling Carrier Densities in Photochemically Reduced Colloidal ZnO Nanocrystals: Size Dependence and the Role of Hole Quencher,
J. Am. Chem. Soc.   2013135, 16569–16577  
183. Miller, A.J.M.; Heinekey, D.M.; Mayer, J.M.; Goldberg, K.I.
Catalytic Disproportionation of Formic Acid to Generate Methanol
Angew. Chem. Int. Ed.   201352, 3981-3984  
182. Wittman, J.M.; Hayoun, R.; Kaminsky, W.; Coggins, M.K.; Mayer, J.M.
A C–C Bonded Phenoxyl Radical Dimer with a Zero Bond Dissociation Free Energy,
J. Am. Chem. Soc.   2013135, 12956-12959  
182. Mayer, J.M.; Michael, F.E.
Correction to Preface: Palladium Chemistry Relevant to Organic Synthesis
Inorg. Chem.  201352, 2257  
181. Valdez, C.N.; Braten, M.; Soria, A.; Gamelin, D.R.; Mayer, J.M.
Effect of Protons on the Redox Chemistry of Colloidal Zinc Oxide Nanocrystals,
J. Am. Chem. Soc.   2013135, 8492-8495  
181. Warren, J.J.; Menzeleev, A.R.; Kretchmer, J.S.; Miller III, T.F.; Gray, H.B.; Mayer, J.M.
Long-Range Proton-Coupled Electron-Transfer Reactions of Bis(imidazole) Iron Tetraphenylporphyrins Linked to Benzoates
J. Phys. Chem. Lett.  20134, 519-523  
180. Miller, A.J.M.; Heinekey, D.M.; Mayer, J.M.; Goldberg, K.I.*
Catalytic Disproportionation of Formic Acid to Generate Methanol,
Angew. Chem., Int. Ed.   201352, 3981–3984  
180. Markle, T.F.; Tronic, T.A.; DiPasquale, A.G.; Kaminsky, W.; Mayer, J.M.
Effect of Basic Site Substituents on Concerted Proton—Electron Transfer in Hydrogen-Bonded Pyridyl—Phenols
J. Phys. Chem. A  2012116, 12249-12259  
179. Warren, J.J.; Menzeleev, A.R.; Kretchmer, J.S.; Miller, III, T.F.; Gray, H.B.; Mayer, J.M.
Long-Range Proton-Coupled Electron-Transfer Reactions of Bis(imidazole) Iron Tetraphenylporphyrins Linked to Benzoates,
J. Phys. Chem. Lett.   20134, 519–523  
179. Tronic, T.A.; Kaminsky, W.; Coggins, M.K.; Mayer, J.M.
Synthesis, Protonation, and Reduction of Ruthenium—Peroxo Complexes with Pendent Nitrogen Bases
Inorg. Chem.  201251, 10916-10928  
178. Schrauben, J.N.; Cattaneo, M.; Day, T.C.; Tenderholt, A.L.; Mayer, J.M.
Multiple-Site Concerted Proton—Electron Transfer Reactions of Hydrogen-Bonded Phenols Are Nonadiabatic and Well Described by Semiclassical Marcus Theory
J. Am. Chem. Soc.  2012134, 16635-16645  
178. Markle, T.F.; Tronic, T.A.; DiPasquale, A.G.; Kaminsky, W.; Mayer, J.M.
Effect of Basic Site Substituents on Concerted Proton-Electron Transfer in Hydrogen Bonded-Pyridyl Phenols,
J. Phys. Chem. A   2012116, 12249–12259  
177. Matson, B.D.; Carver, C.T.; Von Ruden, A.; Yang, J.Y.; Raugei, S.; Mayer, J.M.
Distant Protonated Pyridine Groups in Water-Soluble Iron Porphyrin Electrocatalysts Promote Selective Oxygen Reduction to Water,
Chem. Commun.  201248, 11100-11102  
177. Cohn, A.W.; Janßen, Mayer, J.M.; Gamelin, D.R.
Photocharging ZnO Nanocrystals: Picosecond Hole Capture, Electron Accumulation, and Auger Recombination
J. Phys. Chem. C  2012116, 20633-20642  
176. Cohn, A.W.; Janssen, N.; Mayer, J.M.; Gamelin, D.R.*
Photocharging ZnO Nanocrystals: Picosecond Hole Capture, Electron Accumulation, and Auger Recombination,
J. Phys. Chem. C  2012116, 20633-20642  
176. Smieja, J.M.; Benson, E.E.; Kumar, B.; Grice, K.A.; Seu, C.S.; Miller, A.J.M.; Mayer, J.M.; Kubiak, C.P.
Kinetic and structural studies, origins of selectivity, and interfacial charge transfer in the artificial photosynthesis of CO
Proc. Natl. Acad. Sci.  2012109, 15646-15650  
175. Tronic, T.A.; Kaminsky, W.; Coggins, M.K.; *Mayer, J.M.
Synthesis, Protonation, and Reduction of Ru(O2) Complexes with Pendent Nitrogen Bases,
Inorg. Chem.   201251, 10916-10928  
175. Schrauben, J.N.; Hayoun, R.; Valdez, C.N.; Braten, M.; Fridley, L.; Mayer, J.M.
Titanium and Zinc Oxide Nanoparticles Are Proton-Coupled Electron Transfer Agents
Science  2012336, 1298-1301  
174. Schrauben, J.N.; Cattaneo, M.; Day, T.C.; Tenderholt, A.L.; Mayer, J.M.
Multiple-Site Concerted Proton-Electron Transfer Reactions of Hydrogen-Bonded Phenols are Non-adiabatic and Well Described by Semi-Classical Marcus Theory,
J. Am. Chem. Soc.   2012134, 16635-16645  
174. Barnett, S.M.; Goldberg, K.I.; Mayer, J.M.
A soluble copper-bipyridine water-oxidation electrocatalyst
Nature Chem.  20124, 498-502  
173. Saouma, C.T.; Kaminsky, W.
Decomposition of a Mixed-Valence [2Fe-2S] Cluster Gives Linear Tetra-Ferric and Ferrous Clusters,
Polyhedron  201358, 60-64  
173. Saouma, C.T.; Kaminsky, W.; Mayer, J.M.
Protonation and Concerted Proton—Electron Transfer Reactivity of a Bis-Benzimidazolate Ligated [2Fe—2S] Model for Rieske Clusters
J. Am. Chem. Soc.  2012134, 7293-7296  
172. Saouma, C.; Kaminsky, W.; Mayer, J.M.
Protonation and Concerted Proton-Electron Transfer Reactivity of a Bis-Benzimidazolate Ligated [2Fe-2S] Model for Rieske Clusters,
J. Am. Chem. Soc.   2012134, 7293-7296  
172. Carver, C.T.; Matson, B.D.; Mayer, J.M.
Electrocatalytic Oxygen Reduction by Iron Tetra-arylporphyrins Bearing Pendant Proton Relays
J. Am. Chem. Soc.  2012134, 5444-5447  
171. Schrauben, J.N.; Hayoun, R.; Valdez, C.N.; Braten, M.; Fridley, L.; Mayer, J.M.
Titanium and Zinc Oxide Nanoparticles are Proton-Coupled Electron Transfer Agents,
Science  2012336, 1298-1301  
171. Markle, T.F.; Tenderholt, A.L.; Mayer, J.M.
Probing Quantum and Dynamic Effects in Concerted Proton—Electron Transfer Reactions of Phenol—Base Compounds
J. Phys. Chem. B  2012116, 571-584  
170. Carver, C.T.; Matson, B.D.; Mayer, J.M.
Electrocatalytic Oxygen Reduction by Iron Tetra-arylporphyrins Bearing Pendent Proton Relays,
J. Am. Chem. Soc.   2012134, 5444-5447  
170. Matson, B.D.; Carver, C.T.; Von Ruden, A.; Yang, J.Y.; Raugei, S.; Mayer, J.M.
Distant protonated pyridine groups in water-soluble iron porphyrin electrocatalysts promote selective oxygen reduction to water
Chem. Commun.  201248, 11100-11102  
169. Barnett, S.M.; Goldberg, K.I.; Mayer, J.M.
Soluble copper-bipyridine water-oxidation electrocatalysts,
Nature Chem.   20124, 498-502  
169. Waidmann, C.R.; Miller, A.J.M.; Ng, C.A.; Scheuermann, M.L.; Porter, T.R.; Tronic, T.A.; Mayer, J.M.
Using combinations of oxidants and bases as PCET reactants: thermochemical and practical considerations
Energy Environ. Sci.  20125, 7771-7780  

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