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Publications by Joel N. Schrauben
Multiple-Site Concerted Proton–Electron Transfer Reactions of Hydrogen-Bonded Phenols Are Nonadiabatic and Well Described by Semiclassical Marcus Theory
Journal of the American Chemical Society
Biochemistry
Colloid
Catalysis
Chemistry
Surface Chemistry
Related publications
Effect of Basic Site Substituents on Concerted Proton–Electron Transfer in Hydrogen-Bonded Pyridyl–Phenols
Journal of Physical Chemistry A
Medicine
Theoretical Chemistry
Physical
Photochemical Tyrosine Oxidation With a Hydrogen-Bonded Proton Acceptor by Bidirectional Proton-Coupled Electron Transfer
Chemical Science
Chemistry
Probing Quantum and Dynamic Effects in Concerted Proton–Electron Transfer Reactions of Phenol–Base Compounds
Journal of Physical Chemistry B
Surfaces
Theoretical Chemistry
Materials Chemistry
Films
Medicine
Coatings
Physical
Mechanistic Dichotomy in Proton-Coupled Electron-Transfer Reactions of Phenols With a Copper Superoxide Complex
Excited-State Quenching of Porphyrins by Hydrogen-Bonded Phenol-Pyridine Pair: Evidence of Proton-Coupled Electron Transfer
Effect of Electron and Proton on Hydrogen-Bonded Imidazole Chains
International Journal of Advanced Research in Chemical Science
Electron Transfer Reactions in Organic Chemistry. II. An Analysis of Alkyl Halide Reduction by Electron Transfer Reagents on the Basis of the Marcus Theory.
Acta Chemica Scandinavica
Proton-Coupled Electron Transfer in Photoredox Catalytic Reactions
European Journal of Organic Chemistry
Organic Chemistry
Theoretical Chemistry
Physical
Are Hydrogen-Bonded Charge Transfer Crystals Room Temperature Ferroelectrics?
Physical Review Letters
Astronomy
Physics