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Dalton Transactions (Cambridge, England : 2003)
|
May 22, 2008
How are tris(triazolyl)borate ligands electronically different from tris(pyrazolyl)borate ligands? A study of (Ttz(tBu,Me))CuCO [Ttz(tBu,Me) = tris(3-t-butyl-5-methyl-1,2,4-triazolyl)borate]
Elizabeth T Papish, Trisha M Donahue, Kirsten R Wells, et al.
Inorganic Chemistry
|
June 8, 2012
Hydrotris(triazolyl)borate complexes as functional models for Cu nitrite reductase: the electronic influence of distal nitrogens
Mukesh Kumar, Natalie A Dixon, Anna C Merkle, et al.
Acta Crystallographica. Section E, Crystallographic Communications
|
February 13, 2016
Crystal structures of bis- and hexakis[(6,6'-di-hydroxy-bipyridine)copper(II)] nitrate coordination complexes
Deidra L Gerlach, Ismael Nieto, Corey J Herbst-Gervasoni, et al.
Journal of the American Chemical Society
|
August 14, 2003
Kinetics and thermodynamics of H. transfer from (eta5-C5R5)Cr(CO)3H (R = Ph, Me, H) to methyl methacrylate and styrene
Lihao Tang, Elizabeth T Papish, Graham P Abramo, et al.
Journal of Inorganic Biochemistry
|
November 28, 2019
Cellular uptake of protic ruthenium complexes is influenced by pH dependent passive diffusion and energy dependent efflux
Seungjo Park, Jessica L Gray, Sarah D Altman, et al.
Chemical Communications (Cambridge, England)
|
May 16, 2013
Dramatic tuning of ligand donor properties in (Ttz)CuCO through remote binding of H+ (Ttz = hydrotris(triazolyl)borate)
Natalie A Dixon, Ashley B McQuarters, Jodi S Kraus, et al.
Chemical Communications (Cambridge, England)
|
September 29, 2017
Ruthenium(ii) complexes of pyridinol and N-heterocyclic carbene derived pincers as robust catalysts for selective carbon dioxide reduction
Chance M Boudreaux, Nalaka P Liyanage, Hunter Shirley, et al.
Dalton Transactions (Cambridge, England : 2003)
|
October 5, 2018
Sterically demanding methoxy and methyl groups in ruthenium complexes lead to enhanced quantum yields for blue light triggered photodissociation
Fengrui Qu, Kristina Martinez, Ashley M Arcidiacono, et al.
Inorganic Chemistry
|
February 28, 2006
Synthesis of zinc, copper, nickel, cobalt, and iron complexes using tris(pyrazolyl)methane sulfonate ligands: a structural model for N,N,O binding in metalloenzymes
Elizabeth T Papish, Michael T Taylor, Finith E Jernigan, et al.
Inorganic Chemistry
|
June 13, 2019
Highly Active Ruthenium CNC Pincer Photocatalysts for Visible-Light-Driven Carbon Dioxide Reduction
Sanjit Das, Roberta R Rodrigues, Robert W Lamb, et al.
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of 4
Search research articles
Search
Showing results (11-20 of 34) with videos related to
Sort By:
Page
of 4
Dalton Transactions (Cambridge, England : 2003)
|
May 22, 2008
How are tris(triazolyl)borate ligands electronically different from tris(pyrazolyl)borate ligands? A study of (Ttz(tBu,Me))CuCO [Ttz(tBu,Me) = tris(3-t-butyl-5-methyl-1,2,4-triazolyl)borate]
Elizabeth T Papish, Trisha M Donahue, Kirsten R Wells, et al.
Inorganic Chemistry
|
June 8, 2012
Hydrotris(triazolyl)borate complexes as functional models for Cu nitrite reductase: the electronic influence of distal nitrogens
Mukesh Kumar, Natalie A Dixon, Anna C Merkle, et al.
Acta Crystallographica. Section E, Crystallographic Communications
|
February 13, 2016
Crystal structures of bis- and hexakis[(6,6'-di-hydroxy-bipyridine)copper(II)] nitrate coordination complexes
Deidra L Gerlach, Ismael Nieto, Corey J Herbst-Gervasoni, et al.
Journal of the American Chemical Society
|
August 14, 2003
Kinetics and thermodynamics of H. transfer from (eta5-C5R5)Cr(CO)3H (R = Ph, Me, H) to methyl methacrylate and styrene
Lihao Tang, Elizabeth T Papish, Graham P Abramo, et al.
Journal of Inorganic Biochemistry
|
November 28, 2019
Cellular uptake of protic ruthenium complexes is influenced by pH dependent passive diffusion and energy dependent efflux
Seungjo Park, Jessica L Gray, Sarah D Altman, et al.
Chemical Communications (Cambridge, England)
|
May 16, 2013
Dramatic tuning of ligand donor properties in (Ttz)CuCO through remote binding of H+ (Ttz = hydrotris(triazolyl)borate)
Natalie A Dixon, Ashley B McQuarters, Jodi S Kraus, et al.
Chemical Communications (Cambridge, England)
|
September 29, 2017
Ruthenium(ii) complexes of pyridinol and N-heterocyclic carbene derived pincers as robust catalysts for selective carbon dioxide reduction
Chance M Boudreaux, Nalaka P Liyanage, Hunter Shirley, et al.
Dalton Transactions (Cambridge, England : 2003)
|
October 5, 2018
Sterically demanding methoxy and methyl groups in ruthenium complexes lead to enhanced quantum yields for blue light triggered photodissociation
Fengrui Qu, Kristina Martinez, Ashley M Arcidiacono, et al.
Inorganic Chemistry
|
February 28, 2006
Synthesis of zinc, copper, nickel, cobalt, and iron complexes using tris(pyrazolyl)methane sulfonate ligands: a structural model for N,N,O binding in metalloenzymes
Elizabeth T Papish, Michael T Taylor, Finith E Jernigan, et al.
Inorganic Chemistry
|
June 13, 2019
Highly Active Ruthenium CNC Pincer Photocatalysts for Visible-Light-Driven Carbon Dioxide Reduction
Sanjit Das, Roberta R Rodrigues, Robert W Lamb, et al.
Page
of 4