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Biochemistry|November 28, 2019
Selenocysteine Substitution in a Class I Ribonucleotide ReductaseBrandon L Greene, JoAnne Stubbe, Daniel G NoceraJournal of the American Chemical Society|January 31, 2013
Mechanistic studies of the oxygen evolution reaction mediated by a nickel-borate thin film electrocatalystD Kwabena Bediako, Yogesh Surendranath, Daniel G NoceraAccounts of Chemical Research|June 5, 2013
Reversible, long-range radical transfer in E. coli class Ia ribonucleotide reductaseEllen C Minnihan, Daniel G Nocera, Joanne StubbeThe Journal of Organic Chemistry|November 11, 2017
Scalable Syntheses of 4-Substituted Pyridine-DiiminesDavid Gygi, Seung Jun Hwang, Daniel G NoceraThe Journal of Chemical Physics|September 6, 2020
Driving force dependence of inner-sphere electron transfer for the reduction of CO<sub>2</sub> on a gold electrodeBenjamin A Zhang, Cyrille Costentin, Daniel G NoceraJournal of the American Chemical Society|May 25, 2011
Electocatalytic water oxidation by cobalt(III) hangman β-octafluoro corrolesDilek K Dogutan, Robert McGuire, Daniel G NoceraJournal of the American Chemical Society|March 28, 2014
A functionally stable manganese oxide oxygen evolution catalyst in acidMichael Huynh, D Kwabena Bediako, Daniel G NoceraBiochimica Et Biophysica Acta|February 8, 2005
pH Dependence of charge transfer between tryptophan and tyrosine in dipeptidesSteven Y Reece, Joanne Stubbe, Daniel G NoceraJournal of the American Chemical Society|October 3, 2018
Direct Electrochemical P(V) to P(III) Reduction of Phosphine Oxide Facilitated by Triaryl BoratesJoseph S Elias, Cyrille Costentin, Daniel G NoceraThe Journal of Physical Chemistry. B|June 26, 2007
Ligand-field dependence of the excited state dynamics of Hangman bisporphyrin dyad complexesJustin M Hodgkiss, Alexander Krivokapić, Daniel G NoceraPageof 38