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Journal of the American Chemical Society|June 23, 2005
Vanadium-based, extended catalytic lifetime catechol dioxygenases: evidence for a common catalystCindy-Xing Yin, Richard G FinkeInorganic Chemistry|June 7, 2005
Is it true dioxygenase or classic autoxidation catalysis? Re-investigation of a claimed dioxygenase catalyst based on a Ru(2)-incorporated, polyoxometalate precatalystCindy-Xing Yin, Richard G FinkeJournal of the American Chemical Society|October 6, 2005
Kinetic and mechanistic studies of vanadium-based, extended catalytic lifetime catechol dioxygenasesCindy-Xing Yin, Richard G FinkeInorganic Chemistry|November 8, 2005
Autoxidation-product-initiated dioxygenases: vanadium-based, record catalytic lifetime catechol dioxygenase catalysisCindy-Xing Yin, Yoh Sasaki, Richard G FinkeJournal of the American Chemical Society|March 31, 2005
Iridium(0) nanocluster, acid-assisted catalysis of neat acetone hydrogenation at room temperature: exceptional activity, catalyst lifetime, and selectivity at complete conversionSaim Ozkar, Richard G FinkeThe Journal of Physical Chemistry. A|September 21, 2017
A Classic Azo-Dye Agglomeration System: Evidence for Slow, Continuous Nucleation, Autocatalytic Agglomerative Growth, Plus the Effects of Dust Removal by Microfiltration on the KineticsSaim Özkar, Richard G FinkeLangmuir : the ACS Journal of Surfaces and Colloids|April 6, 2016
Palladium(0) Nanoparticle Formation, Stabilization, and Mechanistic Studies: Pd(acac)₂ as a Preferred Precursor, [Bu₄N]₂HPO₄ Stabilizer, plus the Stoichiometry, Kinetics, and Minimal, Four-Step Mechanism of the Palladium Nanoparticle Formation and Subsequent Agglomeration ReactionsSaim Özkar, Richard G FinkeJournal of the American Chemical Society|May 16, 2002
Nanocluster formation and stabilization fundamental studies: ranking commonly employed anionic stabilizers via the development, then application, of five comparative criteriaSaim Ozkar, Richard G FinkeJournal of the American Chemical Society|April 6, 2017
Nanoparticle Nucleation Is Termolecular in Metal and Involves Hydrogen: Evidence for a Kinetically Effective Nucleus of Three {Ir3H2x·P2W15Nb3O62}6- in Ir(0)n Nanoparticle Formation From [(1,5-COD)IrI·P2W15Nb3O62]8- Plus DihydrogenSaim Özkar, Richard G FinkeLangmuir : the ACS Journal of Surfaces and Colloids|June 23, 2017
Dust Effects on Nucleation Kinetics and Nanoparticle Product Size Distributions: Illustrative Case Study of a Prototype Ir(0)n Transition-Metal Nanoparticle Formation SystemSaim Özkar, Richard G FinkePageof 8