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Richard G Finke

Showing results (51-60 of 71) with videos related to

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ACS Applied Materials & Interfaces|May 25, 2022
Understanding the "Anti-Catalyst" Effect with Added CoO<sub></sub> Water Oxidation Catalyst in Dye-Sensitized Photoelectrolysis Cells: Carbon Impurities in Nanostructured SnO<sub>2</sub> Are the CulpritCarly F Jewell, Ashwanth Subramanian, Chang-Yong Nam, et al.
Inorganic Chemistry|January 9, 2009
Model Ziegler-type hydrogenation catalyst precursors, [(1,5-COD)M(mu-O2C8H15)]2 (M = Ir and Rh): synthesis, characterization, and demonstration of catalytic activity en route to identifying the true industrial hydrogenation catalystsWilliam M Alley, Chase W Girard, Saim Ozkar, et al.
Journal of the American Chemical Society|June 26, 2010
Development plus kinetic and mechanistic studies of a prototype supported-nanoparticle heterogeneous catalyst formation system in contact with solution: Ir(1,5-COD)Cl/gamma-Al2O3 and its reduction by H2 to Ir(0)n/gamma-Al2O3Joseph E Mondloch, Qi Wang, Anatoly I Frenkel, et al.
Inorganic Chemistry|November 3, 2007
Evidence that imidazolium-based ionic ligands can be metal(0)/nanocluster catalyst poisons in at least the test case of iridium(0)-catalyzed acetone hydrogenationLisa Starkey Ott, Sarah Campbell, Kenneth R Seddon, et al.
ACS Applied Materials & Interfaces|March 25, 2014
Visible-light-assisted photoelectrochemical water oxidation by thin films of a phosphonate-functionalized perylene diimide plus CoOx cocatalystJoel T Kirner, Jordan J Stracke, Brian A Gregg, et al.
Biochemistry|September 13, 2008
Fitting yeast and mammalian prion aggregation kinetic data with the Finke-Watzky two-step model of nucleation and autocatalytic growthMurielle A Watzky, Aimee M Morris, Eric D Ross, et al.
Biochemistry|February 6, 2008
Fitting neurological protein aggregation kinetic data via a 2-step, minimal/"Ockham's razor" model: the Finke-Watzky mechanism of nucleation followed by autocatalytic surface growthAimee M Morris, Murielle A Watzky, Jeffrey N Agar, et al.
Journal of the American Chemical Society|March 24, 2005
Is it homogeneous or heterogeneous catalysis? Compelling evidence for both types of catalysts derived from [Rh(eta5-C5Me5)Cl2]2 as a function of temperature and hydrogen pressureCollin M Hagen, Jason A Widegren, Peter M Maitlis, et al.
Journal of the American Chemical Society|September 12, 2018
Electrochemically Driven Water-Oxidation Catalysis Beginning with Six Exemplary Cobalt Polyoxometalates: Is It Molecular, Homogeneous Catalysis or Electrode-Bound, Heterogeneous CoO Scott J Folkman, Joaquin Soriano-Lopez, José Ramón Galán-Mascarós, et al.
Journal of the American Chemical Society|September 27, 2019
Mechanism-Enabled Population Balance Modeling of Particle Formation en Route to Particle Average Size and Size Distribution Understanding and ControlDerek R Handwerk, Patrick D Shipman, Christopher B Whitehead, et al.
Pageof 8

Showing results (51-60 of 71) with videos related to

Sort By:
Pageof 8
ACS Applied Materials & Interfaces|May 25, 2022
Understanding the "Anti-Catalyst" Effect with Added CoO<sub></sub> Water Oxidation Catalyst in Dye-Sensitized Photoelectrolysis Cells: Carbon Impurities in Nanostructured SnO<sub>2</sub> Are the CulpritCarly F Jewell, Ashwanth Subramanian, Chang-Yong Nam, et al.
Inorganic Chemistry|January 9, 2009
Model Ziegler-type hydrogenation catalyst precursors, [(1,5-COD)M(mu-O2C8H15)]2 (M = Ir and Rh): synthesis, characterization, and demonstration of catalytic activity en route to identifying the true industrial hydrogenation catalystsWilliam M Alley, Chase W Girard, Saim Ozkar, et al.
Journal of the American Chemical Society|June 26, 2010
Development plus kinetic and mechanistic studies of a prototype supported-nanoparticle heterogeneous catalyst formation system in contact with solution: Ir(1,5-COD)Cl/gamma-Al2O3 and its reduction by H2 to Ir(0)n/gamma-Al2O3Joseph E Mondloch, Qi Wang, Anatoly I Frenkel, et al.
Inorganic Chemistry|November 3, 2007
Evidence that imidazolium-based ionic ligands can be metal(0)/nanocluster catalyst poisons in at least the test case of iridium(0)-catalyzed acetone hydrogenationLisa Starkey Ott, Sarah Campbell, Kenneth R Seddon, et al.
ACS Applied Materials & Interfaces|March 25, 2014
Visible-light-assisted photoelectrochemical water oxidation by thin films of a phosphonate-functionalized perylene diimide plus CoOx cocatalystJoel T Kirner, Jordan J Stracke, Brian A Gregg, et al.
Biochemistry|September 13, 2008
Fitting yeast and mammalian prion aggregation kinetic data with the Finke-Watzky two-step model of nucleation and autocatalytic growthMurielle A Watzky, Aimee M Morris, Eric D Ross, et al.
Biochemistry|February 6, 2008
Fitting neurological protein aggregation kinetic data via a 2-step, minimal/"Ockham's razor" model: the Finke-Watzky mechanism of nucleation followed by autocatalytic surface growthAimee M Morris, Murielle A Watzky, Jeffrey N Agar, et al.
Journal of the American Chemical Society|March 24, 2005
Is it homogeneous or heterogeneous catalysis? Compelling evidence for both types of catalysts derived from [Rh(eta5-C5Me5)Cl2]2 as a function of temperature and hydrogen pressureCollin M Hagen, Jason A Widegren, Peter M Maitlis, et al.
Journal of the American Chemical Society|September 12, 2018
Electrochemically Driven Water-Oxidation Catalysis Beginning with Six Exemplary Cobalt Polyoxometalates: Is It Molecular, Homogeneous Catalysis or Electrode-Bound, Heterogeneous CoO Scott J Folkman, Joaquin Soriano-Lopez, José Ramón Galán-Mascarós, et al.
Journal of the American Chemical Society|September 27, 2019
Mechanism-Enabled Population Balance Modeling of Particle Formation en Route to Particle Average Size and Size Distribution Understanding and ControlDerek R Handwerk, Patrick D Shipman, Christopher B Whitehead, et al.
Pageof 8