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Dalton Transactions (Cambridge, England : 2003)
|
October 10, 2006
Synthesis, structure and fluorescent studies of novel uranium coordination polymers in the pyridinedicarboxylic acid system
Mark Frisch, Christopher L Cahill
Dalton Transactions (Cambridge, England : 2003)
|
April 13, 2005
Syntheses, structures and fluorescent properties of two novel coordination polymers in the U-Cu-H3pdc system
Mark Frisch, Christopher L Cahill
Angewandte Chemie (International Ed. in English)
|
December 23, 2023
Orbital Engineering Mediated by Cation Conjugation in Luminescent Uranyl-Organic Hybrid Materials
Adharsh Raghavan, Christopher L Cahill
Dalton Transactions (Cambridge, England : 2003)
|
August 11, 2010
Homometallic UO2(2+) diphosphonates assembled under ambient and hydrothermal conditions
Karah E Knope, Christopher L Cahill
Inorganic Chemistry
|
October 28, 2003
Topological evolution in uranyl dicarboxylates: synthesis and structures of one-dimensional UO2(C6H8O4)(H2O)2 and three-dimensional UO2(C6H8O4)
Lauren A Borkowski, Christopher L Cahill
Inorganic Chemistry
|
August 2, 2008
Structural variation within homometallic uranium(VI) carboxyphosphonates: in situ ligand synthesis, directed assembly, metal-ligand coordination and hydrogen bonding
Karah E Knope, Christopher L Cahill
Inorganic Chemistry
|
April 16, 2015
Uranyl-Promoted Peroxide Generation: Synthesis and Characterization of Three Uranyl Peroxo [(UO2)2(O2)] Complexes
Sonia G Thangavelu, Christopher L Cahill
Dalton Transactions (Cambridge, England : 2003)
|
August 3, 2005
Novel coordination polymers and structural systematics in the hydrothermal M,M' trans-3(-3-pyridyl)acrylic acid system
Noel S Gunning, Christopher L Cahill
Chemical Reviews
|
August 14, 2012
Uranyl bearing hybrid materials: synthesis, speciation, and solid-state structures
Michael B Andrews, Christopher L Cahill
Inorganic Chemistry
|
June 18, 2010
Hydrothermal synthesis of uranyl squarates and squarate-oxalates: hydrolysis trends and in situ oxalate formation
Clare E Rowland, Christopher L Cahill
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of 7
Search research articles
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Showing results (1-10 of 64) with videos related to
Sort By:
Page
of 7
Dalton Transactions (Cambridge, England : 2003)
|
October 10, 2006
Synthesis, structure and fluorescent studies of novel uranium coordination polymers in the pyridinedicarboxylic acid system
Mark Frisch, Christopher L Cahill
Dalton Transactions (Cambridge, England : 2003)
|
April 13, 2005
Syntheses, structures and fluorescent properties of two novel coordination polymers in the U-Cu-H3pdc system
Mark Frisch, Christopher L Cahill
Angewandte Chemie (International Ed. in English)
|
December 23, 2023
Orbital Engineering Mediated by Cation Conjugation in Luminescent Uranyl-Organic Hybrid Materials
Adharsh Raghavan, Christopher L Cahill
Dalton Transactions (Cambridge, England : 2003)
|
August 11, 2010
Homometallic UO2(2+) diphosphonates assembled under ambient and hydrothermal conditions
Karah E Knope, Christopher L Cahill
Inorganic Chemistry
|
October 28, 2003
Topological evolution in uranyl dicarboxylates: synthesis and structures of one-dimensional UO2(C6H8O4)(H2O)2 and three-dimensional UO2(C6H8O4)
Lauren A Borkowski, Christopher L Cahill
Inorganic Chemistry
|
August 2, 2008
Structural variation within homometallic uranium(VI) carboxyphosphonates: in situ ligand synthesis, directed assembly, metal-ligand coordination and hydrogen bonding
Karah E Knope, Christopher L Cahill
Inorganic Chemistry
|
April 16, 2015
Uranyl-Promoted Peroxide Generation: Synthesis and Characterization of Three Uranyl Peroxo [(UO2)2(O2)] Complexes
Sonia G Thangavelu, Christopher L Cahill
Dalton Transactions (Cambridge, England : 2003)
|
August 3, 2005
Novel coordination polymers and structural systematics in the hydrothermal M,M' trans-3(-3-pyridyl)acrylic acid system
Noel S Gunning, Christopher L Cahill
Chemical Reviews
|
August 14, 2012
Uranyl bearing hybrid materials: synthesis, speciation, and solid-state structures
Michael B Andrews, Christopher L Cahill
Inorganic Chemistry
|
June 18, 2010
Hydrothermal synthesis of uranyl squarates and squarate-oxalates: hydrolysis trends and in situ oxalate formation
Clare E Rowland, Christopher L Cahill
Page
of 7