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Jeffrey S Ovens

Showing results (1-10 of 40) with videos related to

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Chempluschem|January 24, 2020
Emissive Heterobimetallic Copper(I) Dicyanoaurate-Based Coordination PolymersJeffrey S Ovens, Daniel B Leznoff
Dalton Transactions (Cambridge, England : 2003)|March 12, 2011
Thermally triggered reductive elimination of bromine from Au(III) as a path to Au(I)-based coordination polymersJeffrey S Ovens, Daniel B Leznoff
Inorganic Chemistry|April 5, 2017
Thermal Expansion Behavior of M<sup>I</sup>[AuX<sub>2</sub>(CN)<sub>2</sub>]-Based Coordination Polymers (M = Ag, Cu; X = CN, Cl, Br)Jeffrey S Ovens, Daniel B Leznoff
Chemical Communications (Cambridge, England)|July 5, 2022
Solvent-free Zn (NSNO) complex-catalysed dihydroboration of nitrilesSaeed Ataie, Jeffrey S Ovens, R Tom Baker
Iucrdata|September 11, 2023
Tetrel bond in the triphenyltin(IV) chloride-cyclo-hexyl-diphenyl-phosphane oxide (1/1) cocrystalSachin Liyanage, Jeffrey S Ovens, David L Bryce
Iucrdata|November 7, 2022
1,3,5-Tri-fluoro-2,4,6-tri-iodo-benzene-piperazine (2/1)Christelle Hajjar, Jeffrey S Ovens, David L Bryce
Acta Crystallographica. Section C, Structural Chemistry|October 5, 2022
<sup>77</sup>Se and <sup>125</sup>Te solid-state NMR and X-ray diffraction structural study of chalcogen-bonded 3,4-dicyano-1,2,5-chalcogenodiazole cocrystalsTamali Nag, Jeffrey S Ovens, David L Bryce
Chemistry (Weinheim an Der Bergstrasse, Germany)|July 3, 2024
Electrostatic Surface Potentials and Chalcogen-Bonding Motifs of Substituted 2,1,3-Benzoselenadiazoles Probed via <sup>77</sup>Se Solid-State NMR SpectroscopyTristan Georges, Jeffrey S Ovens, David L Bryce
Chemistry, an Asian Journal|January 23, 2023
Anticooperativity and Competition in Some Cocrystals Featuring Iodine-Nitrogen Halogen BondsMahée Côté, Jeffrey S Ovens, David L Bryce
Nanoscale|May 22, 2020
NIR-to-NIR emission on a water-soluble {Er<sub>6</sub>} and {Er<sub>3</sub>Yb<sub>3</sub>} nanosized molecular wheelDiogo A Gálico, Jeffrey S Ovens, Muralee Murugesu
Pageof 4

Showing results (1-10 of 40) with videos related to

Sort By:
Pageof 4
Chempluschem|January 24, 2020
Emissive Heterobimetallic Copper(I) Dicyanoaurate-Based Coordination PolymersJeffrey S Ovens, Daniel B Leznoff
Dalton Transactions (Cambridge, England : 2003)|March 12, 2011
Thermally triggered reductive elimination of bromine from Au(III) as a path to Au(I)-based coordination polymersJeffrey S Ovens, Daniel B Leznoff
Inorganic Chemistry|April 5, 2017
Thermal Expansion Behavior of M<sup>I</sup>[AuX<sub>2</sub>(CN)<sub>2</sub>]-Based Coordination Polymers (M = Ag, Cu; X = CN, Cl, Br)Jeffrey S Ovens, Daniel B Leznoff
Chemical Communications (Cambridge, England)|July 5, 2022
Solvent-free Zn (NSNO) complex-catalysed dihydroboration of nitrilesSaeed Ataie, Jeffrey S Ovens, R Tom Baker
Iucrdata|September 11, 2023
Tetrel bond in the triphenyltin(IV) chloride-cyclo-hexyl-diphenyl-phosphane oxide (1/1) cocrystalSachin Liyanage, Jeffrey S Ovens, David L Bryce
Iucrdata|November 7, 2022
1,3,5-Tri-fluoro-2,4,6-tri-iodo-benzene-piperazine (2/1)Christelle Hajjar, Jeffrey S Ovens, David L Bryce
Acta Crystallographica. Section C, Structural Chemistry|October 5, 2022
<sup>77</sup>Se and <sup>125</sup>Te solid-state NMR and X-ray diffraction structural study of chalcogen-bonded 3,4-dicyano-1,2,5-chalcogenodiazole cocrystalsTamali Nag, Jeffrey S Ovens, David L Bryce
Chemistry (Weinheim an Der Bergstrasse, Germany)|July 3, 2024
Electrostatic Surface Potentials and Chalcogen-Bonding Motifs of Substituted 2,1,3-Benzoselenadiazoles Probed via <sup>77</sup>Se Solid-State NMR SpectroscopyTristan Georges, Jeffrey S Ovens, David L Bryce
Chemistry, an Asian Journal|January 23, 2023
Anticooperativity and Competition in Some Cocrystals Featuring Iodine-Nitrogen Halogen BondsMahée Côté, Jeffrey S Ovens, David L Bryce
Nanoscale|May 22, 2020
NIR-to-NIR emission on a water-soluble {Er<sub>6</sub>} and {Er<sub>3</sub>Yb<sub>3</sub>} nanosized molecular wheelDiogo A Gálico, Jeffrey S Ovens, Muralee Murugesu
Pageof 4