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Chemical Society Reviews
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July 23, 2009
Asymmetric hydrogenation, transfer hydrogenation and hydrosilylation of ketones catalyzed by iron complexes
Robert H Morris
Chemical Reviews
|
December 22, 2025
Paramagnetic Transition Metal Hydride Complexes
Adi Fishkin, Robert H Morris
Nature Protocols
|
January 9, 2015
Synthesis and use of an asymmetric transfer hydrogenation catalyst based on iron(II) for the synthesis of enantioenriched alcohols and amines
Weiwei Zuo, Robert H Morris
Inorganic Chemistry
|
October 4, 2012
Symmetry aspects of H2 splitting by five-coordinate d6 ruthenium amides, and calculations on acetophenone hydrogenation, ruthenium alkoxide formation, and subsequent hydrogenolysis in a model trans-Ru(H)2(diamine)(diphosphine) system
Faraj Hasanayn, Robert H Morris
ACS Omega
|
September 5, 2022
Density Functional Theory Study on the Selective Reductive Amination of Aldehydes and Ketones over Their Reductions to Alcohols Using Sodium Triacetoxyborohydride
Shannon J Oliphant, Robert H Morris
Molecules (Basel, Switzerland)
|
August 26, 2022
A Plausible Mechanism for the Iridium-Catalyzed Hydrogenation of a Bulky <i>N</i>-Aryl Imine in the (<i>S</i>)-Metolachlor Process
Amanda L Kwan, Robert H Morris
Inorganic Chemistry
|
November 12, 2010
Effect of the structure of the diamine backbone of P-N-N-P ligands in iron(II) complexes on catalytic activity in the transfer hydrogenation of acetophenone
Alexandre A Mikhailine, Robert H Morris
Sensors (Basel, Switzerland)
|
November 20, 2014
Magnetic resonance sensors
Robert H Morris, Michael I Newton
Journal of the American Chemical Society
|
January 13, 2005
Enantioselective tandem michael addition/H2-hydrogenation catalyzed by ruthenium hydride borohydride complexes containing beta-aminophosphine ligands
Rongwei Guo, Robert H Morris, Datong Song
Inorganic Chemistry
|
September 13, 2016
Density Functional Theory Calculations Support the Additive Nature of Ligand Contributions to the pK<sub>a</sub> of Iron Hydride Phosphine Carbonyl Complexes
Molly M H Sung, Robert H Morris
Page
of 11
Search research articles
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Showing results (11-20 of 110) with videos related to
Sort By:
Page
of 11
Chemical Society Reviews
|
July 23, 2009
Asymmetric hydrogenation, transfer hydrogenation and hydrosilylation of ketones catalyzed by iron complexes
Robert H Morris
Chemical Reviews
|
December 22, 2025
Paramagnetic Transition Metal Hydride Complexes
Adi Fishkin, Robert H Morris
Nature Protocols
|
January 9, 2015
Synthesis and use of an asymmetric transfer hydrogenation catalyst based on iron(II) for the synthesis of enantioenriched alcohols and amines
Weiwei Zuo, Robert H Morris
Inorganic Chemistry
|
October 4, 2012
Symmetry aspects of H2 splitting by five-coordinate d6 ruthenium amides, and calculations on acetophenone hydrogenation, ruthenium alkoxide formation, and subsequent hydrogenolysis in a model trans-Ru(H)2(diamine)(diphosphine) system
Faraj Hasanayn, Robert H Morris
ACS Omega
|
September 5, 2022
Density Functional Theory Study on the Selective Reductive Amination of Aldehydes and Ketones over Their Reductions to Alcohols Using Sodium Triacetoxyborohydride
Shannon J Oliphant, Robert H Morris
Molecules (Basel, Switzerland)
|
August 26, 2022
A Plausible Mechanism for the Iridium-Catalyzed Hydrogenation of a Bulky <i>N</i>-Aryl Imine in the (<i>S</i>)-Metolachlor Process
Amanda L Kwan, Robert H Morris
Inorganic Chemistry
|
November 12, 2010
Effect of the structure of the diamine backbone of P-N-N-P ligands in iron(II) complexes on catalytic activity in the transfer hydrogenation of acetophenone
Alexandre A Mikhailine, Robert H Morris
Sensors (Basel, Switzerland)
|
November 20, 2014
Magnetic resonance sensors
Robert H Morris, Michael I Newton
Journal of the American Chemical Society
|
January 13, 2005
Enantioselective tandem michael addition/H2-hydrogenation catalyzed by ruthenium hydride borohydride complexes containing beta-aminophosphine ligands
Rongwei Guo, Robert H Morris, Datong Song
Inorganic Chemistry
|
September 13, 2016
Density Functional Theory Calculations Support the Additive Nature of Ligand Contributions to the pK<sub>a</sub> of Iron Hydride Phosphine Carbonyl Complexes
Molly M H Sung, Robert H Morris
Page
of 11