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Methods in Enzymology|September 11, 2024
Spectroscopic definition of ferrous active sites in non-heme iron enzymesEdward I Solomon, Robert R GipsonJournal of Inorganic Biochemistry|July 31, 2025
Activating metal sites for electron transfer and catalysisEdward I Solomon, Robert R GipsonInorganic Chemistry|September 27, 2006
Spectroscopic methods in bioinorganic chemistry: blue to green to red copper sitesEdward I SolomonInorganic Chemistry|June 15, 2016
Dioxygen Binding, Activation, and Reduction to H2O by Cu EnzymesEdward I SolomonInorganic Chemistry|October 24, 2001
Calculation of Zero-Field Splittings, g-Values, and the Relativistic Nephelauxetic Effect in Transition Metal Complexes. Application to High-Spin Ferric ComplexesFrank Neese, Edward I. SolomonJournal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|July 3, 2016
Structure/function correlations over binuclear non-heme iron active sitesEdward I Solomon, Kiyoung ParkInorganica Chimica Acta|November 9, 2010
Density Functional Theory Calculations on Fe-O and O-O Cleavage of Ferric Hydroperoxide Species: Role of axial ligand and spin stateAbhishek Dey, Edward I SolomonAccounts of Chemical Research|December 29, 2025
Electronic Structure Contributions to the Reactivity of Mononuclear Fe<sup>IV</sup>-Oxo IntermediatesAugustin Braun, Edward I SolomonInorganic Chemistry|October 24, 2001
MCD C-Term Signs, Saturation Behavior, and Determination of Band Polarizations in Randomly Oriented Systems with Spin S >/= (1)/(2). Applications to S = (1)/(2) and S = (5)/(2)Frank Neese, Edward I. SolomonCurrent Opinion in Chemical Biology|April 7, 2005
Dioxygen activation by copper, heme and non-heme iron enzymes: comparison of electronic structures and reactivitiesAndrea Decker, Edward I SolomonPageof 41