77 Publications (Page 1 of 4)
2019
Systematic Application of the Principle of Detailed Balancing to Complex Homogeneous Chemical Reaction MechanismsStanbury, David M and Hoffman, DeanThe journal of physical chemistry. A, vol. 123, (no. 26), pp. 5445, 2019-Jun-26.
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2018
Comment on the Principle of Detailed Balancing in Complex Mechanisms and Its Application to Iodate ReactionsStanbury, David MThe Journal of Physical Chemistry A, vol. 122, (no. 15), pp. 3957, 20180419.
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Hydration Energies and Reactivity of the Hypohalite AnionsStanbury, David MInorganic Chemistry, vol. 57, (no. 3), pp. 1669, 20180205.
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2017
Oxidations at Sulfur Centers by Aqueous Hypochlorous Acid and Hypochlorite: Cl+ Versus O Atom TransferHu, Ying⋅Xie, Guangyuan and Stanbury, David MInorganic Chemistry, vol. 56, (no. 7), pp. 4056, 20170403.
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2016
Kinetics of the Benzaldehyde-Inhibited Oxidation of Sulfite by Chlorine DioxidePan, Changwei⋅Gao, Qingyu and Stanbury, David MInorganic Chemistry, vol. 55, (no. 1), pp. 370, 20160104.
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One-Electron Oxidation of Hydrogen Sulfide by a Stable Oxidant: Hexachloroiridate(IV)Hu, Ying and Stanbury, David MInorganic Chemistry, vol. 55, (no. 15), pp. 7803, 20160801.
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2015
Standard electrode potentials involving radicals in aqueous solution: inorganic radicals (IUPAC Technical Report)Armstrong, David A⋅Huie, Robert E⋅Koppenol, Willem H⋅Lymar, Sergei V⋅Merényi, Gábor⋅Neta, Pedatsur⋅Ruscic, Branko⋅Stanbury, David M⋅Steenken, Steen and Wardman, PeterPure and Applied Chemistry, vol. 87, (no. 11), pp. 1150, 2015-12-1.
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2014
Comment on “Buffer Effects in the Kinetics of Concerted Proton-Coupled Electron Transfer: The Electrochemical Oxidation of Glutathione Mediated by [IrCl6]2– at Variable Buffer pK a and Concentration”Bhattarai, Nootan and Stanbury, David MThe Journal of Physical Chemistry C, vol. 118, (no. 1), pp. 742, 20140109.
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Kinetics of the Initial Steps in the Aqueous Oxidation of Thiosulfate by Chlorine DioxidePan, Changwei and Stanbury, David MThe Journal of Physical Chemistry A, vol. 118, (no. 34), pp. 6831, 20140828.
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Oxidation of cysteinesulfinic acid by hexachloroiridateBhattarai, Nootan and Stanbury, DavidJournal of Physical Chemistry A, vol. 118, (no. 4), pp. 1097, 20140130.
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Oxidation of Cysteinesulfinic Acid by Hexachloroiridate(IV)Bhattarai, Nootan and Stanbury, David MThe Journal of Physical Chemistry B, vol. 118, (no. 4), pp. 1101, 20140130.
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2013
Standard electrode potentials involving radicals in aqueous solution: inorganic radicalsArmstrong, David A⋅Huie, Robert E⋅Lymar, Sergei⋅Koppenol, Willem H⋅Merényi, Gabor⋅Neta, Pedatsur⋅Stanbury, David M⋅Steenken, Sten and Wardman, PeterBioInorganic Reaction Mechanisms, vol. 9, (no. 1), pp. 61, 2013-12-01.
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2012
Oxidation of glutathione by hexachloroiridate(IV), dicyanobis(bipyridine)iron(III), and tetracyano(bipyridine)iron(III)Bhattarai, Nootan and Stanbury, David MInorganic chemistry, vol. 51, (no. 24), pp. 13311, 2012-Dec-17.
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2011
ChemInform Abstract: Reactivity of Inorganic Radicals in Aqueous SolutionStanbury, David MChemInform, vol. 42, (no. 11), pp. no, March 15, 2011.
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Overoxidation of Phenol by Hexachloroiridate(IV)Song, Na and Stanbury, David MInorganic Chemistry, vol. 50, (no. 24), pp. 12773, 20111219.
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2010
Electrode potentials of partially reduced oxygen species, from dioxygen to water.Koppenol, Willem H⋅Stanbury, David M and Bounds, Patricia LFree radical biology & medicine, vol. 49, (no. 3), pp. 317-22, 2010/Aug/1.
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2008
Proton-coupled electron-transfer oxidation of phenols by hexachloroiridate(IV).Song, Na and Stanbury, David MInorganic chemistry, vol. 47, (no. 24), pp. 11458-60, 2008/Dec/15.
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2007
Critical role of water content in the formation and reactivity of uranium, neptunium, and plutonium iodates under hydrothermal conditions: implications for the oxidative dissolution of spent nuclear fuel.Bray, Travis H⋅Ling, Jie⋅Choi, Eun Sang⋅Brooks, James S⋅Beitz, James V⋅Sykora, Richard⋅Haire, Richard G⋅Stanbury, David M and Albrecht Schmitt, Thomas EInorganic chemistry, vol. 46, (no. 9), pp. 3663-8, 2007/Apr/30.
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Critical Role of Water Content in the Formation and Reactivity of Uranium, Neptunium, and Plutonium Iodates under Hydrothermal Conditions: Implications for the Oxidative Dissolution of Spent Nuclear FuelBray, Travis H⋅Ling, Jie⋅Choi, Eun Sang⋅Brooks, James S⋅Beitz, James V⋅Sykora, Richard E⋅Haire, Richard G⋅Stanbury, David M and Albrecht‐Schmitt, Thomas EChemInform, vol. 38, (no. 30), pp. no, July 24, 2007.
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Kinetic Isotope Effect and Extended pH-Dependent Studies of the Oxidation of Hydroxylamine by Hexachloroiridate(IV): ET and PCETMakarycheva-Mikhailova, Anastasia V⋅Stanbury, David M and McKee, Michael LThe Journal of Physical Chemistry B, vol. 111, (no. 24), pp. 6948, 20070621.
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2006
Oxidation of iodide by a series of Fe(III) complexes in acetonitrile.Wang, Xiaoguang and Stanbury, David MInorganic chemistry, vol. 45, (no. 8), pp. 3415-23, 2006/Apr/17.
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2005
Catalytic and direct oxidation of cysteine by octacyanomolybdate(V).Hung, Meiling and Stanbury, David MInorganic chemistry, vol. 44, (no. 10), pp. 3541-50, 2005/May/16.
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Oxidation of Thioglycolate by [Os(phen)3]3+: an Unusual Example of Redox-Mediated Aromatic SubstitutionHung, Meiling and Stanbury, David MInorganic Chemistry, vol. 44, (no. 26), pp. 9960, 20051226.
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Copper catalysis of iodide by [Fe(super III) in acetonitrileWang, Xiaoguang and Stanbury, DavidJournal of Physical Chemistry A, vol. 108, (no. 38), pp. 7637, 20040923.
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