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Richard G Finke

Showing results (41-50 of 71) with videos related to

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Biochemistry|December 10, 2003
Cobalamin-dependent methionine synthase: probing the role of the axial base in catalysis of methyl transfer between methyltetrahydrofolate and exogenous cob(I)alamin or cob(I)inamideJeanne Sirovatka Dorweiler, Richard G Finke, Rowena G Matthews
Biochimica Et Biophysica Acta|December 17, 2008
Protein aggregation kinetics, mechanism, and curve-fitting: a review of the literatureAimee M Morris, Murielle A Watzky, Richard G Finke
Journal of Nanoscience and Nanotechnology|August 1, 2007
Nanocluster formation and stabilization fundamental studies: ranking the nanocluster stabilizing ability of halidesLisa Starkey Ott, Morgan L Cline, Richard G Finke
Inorganic Chemistry|April 9, 2009
Reinvestigation of a Ru(2)-incorporated polyoxometalate dioxygenase precatalyst, "[WZnRu(2)(III)(H(2)O)(OH)(ZnW(9)O(34))(2)](11-)": evidence for marginal, <or=0.2 equivalents of Ru incorporation plus faster catalysis by physical mixtures of [Ru(II)(DMSO)(4)Cl(2)] and the parent polyoxometalate [WZn(3)(H(2)O)(2)(ZnW(9)O(34))(2)](12-)Aimee M Morris, Oren P Anderson, Richard G Finke
Journal of the American Chemical Society|January 22, 2014
A four-step mechanism for the formation of supported-nanoparticle heterogenous catalysts in contact with solution: the conversion of Ir(1,5-COD)Cl/γ-Al2O3 to Ir(0)(∼170)/γ-Al2O3Patrick D Kent, Joseph E Mondloch, Richard G Finke
Inorganic Chemistry|November 26, 2002
Providing a chemical basis toward understanding the histidine base-on motif of methylcobalamin-dependent methionine synthase: an improved purification of methylcobinamide, plus thermodynamic studies of methylcobinamide binding exogenous imidazole and pyridine basesJeanne Sirovatka Dorweiler, Rowena G Matthews, Richard G Finke
Inorganic Chemistry|March 26, 1997
Polyoxoanion-Supported Organometallic Complexes: Carbonyls of Rhenium(I), Iridium(I), and Rhodium(I) That Are Soluble Analogs of Solid-Oxide-Supported M(CO)(n)()(+) and That Exhibit Novel M(CO)(n)()(+) MobilityToshi Nagata, Matthias Pohl, Heiko Weiner, et al.
Journal of the American Chemical Society|August 19, 2008
Transition-metal nanocluster size vs formation time and the catalytically effective nucleus number: a mechanism-based treatmentMurielle A Watzky, Eric E Finney, Richard G Finke
Inorganic Chemistry|January 25, 2018
Alcohol Solvent Effects in the Synthesis of Co<sub>3</sub>O<sub>4</sub> Metal-Oxide Nanoparticles: Disproof of a Surface-Ligand Thermodynamic Effect en Route to Alternative Kinetic and Thermodynamic ExplanationsScott J Folkman, Meng Zhou, Matthew Nicki, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|February 4, 2020
Dust Effects on Ir(0)<sub>n</sub> Nanoparticle Formation Nucleation and Growth Kinetics and Particle Size-Distributions: Analysis by and Insights from Mechanism-Enabled Population Balance ModelingDerek R Handwerk, Patrick D Shipman, Saim Özkar, et al.
Pageof 8

Showing results (41-50 of 71) with videos related to

Sort By:
Pageof 8
Biochemistry|December 10, 2003
Cobalamin-dependent methionine synthase: probing the role of the axial base in catalysis of methyl transfer between methyltetrahydrofolate and exogenous cob(I)alamin or cob(I)inamideJeanne Sirovatka Dorweiler, Richard G Finke, Rowena G Matthews
Biochimica Et Biophysica Acta|December 17, 2008
Protein aggregation kinetics, mechanism, and curve-fitting: a review of the literatureAimee M Morris, Murielle A Watzky, Richard G Finke
Journal of Nanoscience and Nanotechnology|August 1, 2007
Nanocluster formation and stabilization fundamental studies: ranking the nanocluster stabilizing ability of halidesLisa Starkey Ott, Morgan L Cline, Richard G Finke
Inorganic Chemistry|April 9, 2009
Reinvestigation of a Ru(2)-incorporated polyoxometalate dioxygenase precatalyst, "[WZnRu(2)(III)(H(2)O)(OH)(ZnW(9)O(34))(2)](11-)": evidence for marginal, <or=0.2 equivalents of Ru incorporation plus faster catalysis by physical mixtures of [Ru(II)(DMSO)(4)Cl(2)] and the parent polyoxometalate [WZn(3)(H(2)O)(2)(ZnW(9)O(34))(2)](12-)Aimee M Morris, Oren P Anderson, Richard G Finke
Journal of the American Chemical Society|January 22, 2014
A four-step mechanism for the formation of supported-nanoparticle heterogenous catalysts in contact with solution: the conversion of Ir(1,5-COD)Cl/γ-Al2O3 to Ir(0)(∼170)/γ-Al2O3Patrick D Kent, Joseph E Mondloch, Richard G Finke
Inorganic Chemistry|November 26, 2002
Providing a chemical basis toward understanding the histidine base-on motif of methylcobalamin-dependent methionine synthase: an improved purification of methylcobinamide, plus thermodynamic studies of methylcobinamide binding exogenous imidazole and pyridine basesJeanne Sirovatka Dorweiler, Rowena G Matthews, Richard G Finke
Inorganic Chemistry|March 26, 1997
Polyoxoanion-Supported Organometallic Complexes: Carbonyls of Rhenium(I), Iridium(I), and Rhodium(I) That Are Soluble Analogs of Solid-Oxide-Supported M(CO)(n)()(+) and That Exhibit Novel M(CO)(n)()(+) MobilityToshi Nagata, Matthias Pohl, Heiko Weiner, et al.
Journal of the American Chemical Society|August 19, 2008
Transition-metal nanocluster size vs formation time and the catalytically effective nucleus number: a mechanism-based treatmentMurielle A Watzky, Eric E Finney, Richard G Finke
Inorganic Chemistry|January 25, 2018
Alcohol Solvent Effects in the Synthesis of Co<sub>3</sub>O<sub>4</sub> Metal-Oxide Nanoparticles: Disproof of a Surface-Ligand Thermodynamic Effect en Route to Alternative Kinetic and Thermodynamic ExplanationsScott J Folkman, Meng Zhou, Matthew Nicki, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|February 4, 2020
Dust Effects on Ir(0)<sub>n</sub> Nanoparticle Formation Nucleation and Growth Kinetics and Particle Size-Distributions: Analysis by and Insights from Mechanism-Enabled Population Balance ModelingDerek R Handwerk, Patrick D Shipman, Saim Özkar, et al.
Pageof 8