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Tom Baker

Showing results (71-80 of 84) with videos related to

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ACS Applied Materials & Interfaces|December 28, 2020
Anion-Dependent Catalytic C-C Bond Cleavage of a Lignin Model within a Cationic Metal-Organic FrameworkWalace D do Pim, Fernanda G Mendonça, Gabriel Brunet, et al.
Angewandte Chemie (International Ed. in English)|August 30, 2008
In situ multinuclear NMR spectroscopic studies of the thermal decomposition of ammonia borane in solutionWendy J Shaw, John C Linehan, Nathaniel K Szymczak, et al.
Chemical Communications (Cambridge, England)|August 22, 2013
Lewis base assisted B-H bond redistribution in borazine and polyborazyleneBenjamin L Davis, Brian D Rekken, Ryszard Michalczyk, et al.
Inorganic Chemistry|November 8, 2017
Iron(II) Complexes of a Hemilabile SNS Amido Ligand: Synthesis, Characterization, and ReactivityUttam K Das, Stephanie L Daifuku, Theresa E Iannuzzi, et al.
Organometallics|July 4, 2017
Transition-Metal-Free Formation of C-E Bonds (E = C, N, O, S) and Formation of C-M Bonds (M = Mn, Mo) from <i>N</i>-Heterocyclic Carbene Mediated Fluoroalkene C-F Bond ActivationMatthew C Leclerc, Bulat M Gabidullin, Jason G Da Gama, et al.
Chemical Communications (Cambridge, England)|December 6, 2008
Coordination of aminoborane, NH(2)BH(2), dictates selectivity and extent of H(2) release in metal-catalysed ammonia borane dehydrogenationVincent Pons, R Tom Baker, Nathaniel K Szymczak, et al.
Dalton Transactions (Cambridge, England : 2003)|March 23, 2005
The electron-poor phosphines P{C6H3(CF3)2-3,5}3 and P(C6F5)3 do not mimic phosphites as ligands for hydroformylation. A comparison of the coordination chemistry of P{C6H3(CF3)2-3,5}3 and P(C6F5)3 and the unexpectedly low hydroformylation activity of their rhodium complexesMatthew L Clarke, Dianne Ellis, Kate L Mason, et al.
Journal of the American Chemical Society|October 10, 2024
Experimental Evidence for Zerovalent Pd(NHC) as a Competent Catalyst in C-N Cross-Coupling (NHC = DiMeIHept<sup>Cl</sup>)Volodymyr Semeniuchenko, Sepideh Sharif, Neha Rana, et al.
Inorganic Chemistry|January 8, 2016
Mononuclear, Dinuclear, and Trinuclear Iron Complexes Featuring a New Monoanionic SNS Thiolate LigandUttam K Das, Stephanie L Daifuku, Serge I Gorelsky, et al.
Journal of the American Chemical Society|December 18, 2015
Perfluoroalkyl Cobalt(III) Fluoride and Bis(perfluoroalkyl) Complexes: Catalytic Fluorination and Selective Difluorocarbene FormationMatthew C Leclerc, Julia M Bayne, Graham M Lee, et al.
Pageof 9

Showing results (71-80 of 84) with videos related to

Sort By:
Pageof 9
ACS Applied Materials & Interfaces|December 28, 2020
Anion-Dependent Catalytic C-C Bond Cleavage of a Lignin Model within a Cationic Metal-Organic FrameworkWalace D do Pim, Fernanda G Mendonça, Gabriel Brunet, et al.
Angewandte Chemie (International Ed. in English)|August 30, 2008
In situ multinuclear NMR spectroscopic studies of the thermal decomposition of ammonia borane in solutionWendy J Shaw, John C Linehan, Nathaniel K Szymczak, et al.
Chemical Communications (Cambridge, England)|August 22, 2013
Lewis base assisted B-H bond redistribution in borazine and polyborazyleneBenjamin L Davis, Brian D Rekken, Ryszard Michalczyk, et al.
Inorganic Chemistry|November 8, 2017
Iron(II) Complexes of a Hemilabile SNS Amido Ligand: Synthesis, Characterization, and ReactivityUttam K Das, Stephanie L Daifuku, Theresa E Iannuzzi, et al.
Organometallics|July 4, 2017
Transition-Metal-Free Formation of C-E Bonds (E = C, N, O, S) and Formation of C-M Bonds (M = Mn, Mo) from <i>N</i>-Heterocyclic Carbene Mediated Fluoroalkene C-F Bond ActivationMatthew C Leclerc, Bulat M Gabidullin, Jason G Da Gama, et al.
Chemical Communications (Cambridge, England)|December 6, 2008
Coordination of aminoborane, NH(2)BH(2), dictates selectivity and extent of H(2) release in metal-catalysed ammonia borane dehydrogenationVincent Pons, R Tom Baker, Nathaniel K Szymczak, et al.
Dalton Transactions (Cambridge, England : 2003)|March 23, 2005
The electron-poor phosphines P{C6H3(CF3)2-3,5}3 and P(C6F5)3 do not mimic phosphites as ligands for hydroformylation. A comparison of the coordination chemistry of P{C6H3(CF3)2-3,5}3 and P(C6F5)3 and the unexpectedly low hydroformylation activity of their rhodium complexesMatthew L Clarke, Dianne Ellis, Kate L Mason, et al.
Journal of the American Chemical Society|October 10, 2024
Experimental Evidence for Zerovalent Pd(NHC) as a Competent Catalyst in C-N Cross-Coupling (NHC = DiMeIHept<sup>Cl</sup>)Volodymyr Semeniuchenko, Sepideh Sharif, Neha Rana, et al.
Inorganic Chemistry|January 8, 2016
Mononuclear, Dinuclear, and Trinuclear Iron Complexes Featuring a New Monoanionic SNS Thiolate LigandUttam K Das, Stephanie L Daifuku, Serge I Gorelsky, et al.
Journal of the American Chemical Society|December 18, 2015
Perfluoroalkyl Cobalt(III) Fluoride and Bis(perfluoroalkyl) Complexes: Catalytic Fluorination and Selective Difluorocarbene FormationMatthew C Leclerc, Julia M Bayne, Graham M Lee, et al.
Pageof 9