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Journal of the American Chemical Society|May 29, 2015
Chemical Plausibility of Cu(III) with Biological Ligation in pMMOCooper Citek, J Brannon Gary, Erik C Wasinger, et al.Nature Chemistry|March 23, 2012
Self-assembly of the oxy-tyrosinase core and the fundamental components of phenolic hydroxylationCooper Citek, Christopher T Lyons, Erik C Wasinger, et al.Journal of the American Chemical Society|September 30, 2005
Variable-temperature, variable-field magnetic circular dichroism studies of tris-hydroxy- and mu3-oxo-bridged trinuclear Cu(II) complexes: evaluation of proposed structures of the native intermediate of the multicopper oxidasesJungjoo Yoon, Liviu M Mirica, T Daniel P Stack, et al.Inorganic Chemistry|September 11, 2002
A spectrochemical walk: single-site perturbation within a series of six-coordinate ferrous complexesChristian R Goldsmith, Robert T Jonas, Adam P Cole, et al.Angewandte Chemie (International Ed. in English)|July 22, 2016
Simplest Monodentate Imidazole Stabilization of the oxy-Tyrosinase Cu2 O2 Core: Phenolate Hydroxylation through a Cu(III) IntermediateLinus Chiang, William Keown, Cooper Citek, et al.Journal of the American Chemical Society|November 28, 2013
Ligand noninnocence of thiolate/disulfide in dinuclear copper complexes: solvent-dependent redox isomerization and proton-coupled electron transferAndrew M Thomas, Bo-Lin Lin, Erik C Wasinger, et al.Journal of the American Chemical Society|April 5, 2012
Electrochemical and spectroscopic effects of mixed substituents in bis(phenolate)-copper(II) galactose oxidase model complexesRussell C Pratt, Christopher T Lyons, Erik C Wasinger, et al.Journal of the American Chemical Society|January 11, 2013
Gas-phase azide functionalization of carbonEric D Stenehjem, Vadim R Ziatdinov, T Daniel P Stack, et al.Chemical Communications (Cambridge, England)|April 3, 2003
Oxidatively robust monophenolate-copper(II) complexes as potential models of galactose oxidaseRobertus J M Klein Gebbink, Masayuki Watanabe, Russell C Pratt, et al.The Journal of Physical Chemistry. A|December 14, 2007
Kinetic and mechanistic studies of the electrocatalytic reduction of O2 TO H2O with mononuclear Cu complexes of substituted 1,10-phenanthrolinesCharles C L McCrory, Xavier Ottenwaelder, T Daniel P Stack, et al.Pageof 7