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Dalton Transactions (Cambridge, England : 2003)|July 11, 2013
Solvent dependent anion dissociation limits copper(I) catalysed atom transfer reactionsTimothy J Zerk, Paul V BernhardtInorganic Chemistry|October 14, 2014
New method for exploring deactivation kinetics in copper-catalyzed atom-transfer-radical reactionsTimothy J Zerk, Paul V BernhardtInorganic Chemistry|April 28, 2017
Organo-Copper(II) Complexes as Products of Radical Atom TransferTimothy J Zerk, Paul V BernhardtInorganic Chemistry|September 23, 2016
A Kinetico-Mechanistic Study on CuII Deactivators Employed in Atom Transfer Radical PolymerizationTimothy J Zerk, Manuel Martinez, Paul V BernhardtChemical Communications (Cambridge, England)|July 30, 2016
N-Oxides rescue Ru(v) in catalytic Griffith-Ley (TPAP) alcohol oxidationsTimothy J Zerk, Peter W Moore, Craig M Williams, et al.Inorganic Chemistry|October 3, 2019
Low Reorganization Energy for Electron Self-Exchange by a Formally Copper(III,II) Redox CoupleTimothy J Zerk, Caroline T Saouma, James M Mayer, et al.Journal of the American Chemical Society|October 17, 2019
Mechanisms for Hydrogen-Atom Abstraction by Mononuclear Copper(III) Cores: Hydrogen-Atom Transfer or Concerted Proton-Coupled Electron Transfer?Mukunda Mandal, Courtney E Elwell, Caitlin J Bouchey, et al.Inorganic Chemistry|July 4, 2018
Kineticomechanistic Study of the Redox pH Cycling Processes Occurring on a Robust Water-Soluble Cyanido-Bridged Mixed-Valence {CoIII/FeII}2 SquareLaura Alcázar, Paul V Bernhardt, Montserrat Ferrer, et al.Chemical Science|April 6, 2018
Elucidating the mechanism of the Ley-Griffith (TPAP) alcohol oxidationTimothy J Zerk, Peter W Moore, Joshua S Harbort, et al.Pageof 1