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Chemosphere|August 13, 2010
Kinetics and mechanisms of sulfate radical oxidation of β-lactam antibiotics in waterKimberly A Rickman, Stephen P MezykThe Journal of Physical Chemistry. A|August 13, 2010
Hydroxyl-radical-induced degradative oxidation of beta-lactam antibiotics in water: absolute rate constant measurementsMichelle K Dail, Stephen P MezykThe Journal of Physical Chemistry. A|December 22, 2005
Rate constant and activation energy measurement for the reaction of atomic hydrogen with thiocyanate and azide in aqueous solutionStephen P Mezyk, David M BartelsEnvironmental Science & Technology|June 21, 2018
Elucidating the Elementary Reaction Pathways and Kinetics of Hydroxyl Radical-Induced Acetone Degradation in Aqueous Phase Advanced Oxidation ProcessesDivya Kamath, Stephen P Mezyk, Daisuke MinakataACS Environmental Au|April 27, 2023
Critical Review of UV-Advanced Reduction Processes for the Treatment of Chemical Contaminants in WaterBenjamin D Fennell, Stephen P Mezyk, Garrett McKayThe Journal of Physical Chemistry. A|December 11, 2008
Determination of arrhenius and thermodynamic parameters for the aqueous reaction of the hydroxyl radical with lactic acidLeigh R Martin, Stephen P Mezyk, Bruce J MincherEnvironmental Science & Technology|March 20, 2019
The Impact of pH and Irradiation Wavelength on the Production of Reactive Oxidants during Chlorine PhotolysisDevon Manley Bulman, Stephen P Mezyk, Christina K RemucalRadiation Research|June 4, 2010
Free radical-induced redox chemistry of Nedaplatin and Satraplatin under physiological conditionsKaty L Swancutt, Stephen P Mezyk, James J KiddleRadiation Research|October 2, 2007
Free radical-induced redox chemistry of platinum-containing anti-cancer drugsKaty L Swancutt, Stephen P Mezyk, James J KiddleThe Journal of Physical Chemistry. A|June 25, 2008
A pulse radiolysis investigation of the reactions of tributyl phosphate with the radical products of aqueous nitric acid irradiationBruce J Mincher, Stephen P Mezyk, Leigh R MartinPageof 9