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The Positional Isomeric Effect on the Structural Diversity of Cd(II) Coordination Polymers, Using Flexible Positional Isomeric Ligands Containing Pyridyl, Triazole, and Carboxylate Fragments
by
Narea, Pilar
, Brito, Iván
, Cisterna, Jonathan
, Cárdenas, Alejandro
, Llanos, Jaime
, Araneda, Catherine
in
Cadmium - chemistry
/ Carboxylic Acids - chemistry
/ Cd(II) complexes
/ Coordination Complexes - chemical synthesis
/ Coordination Complexes - chemistry
/ Crystallography, X-Ray
/ Hydrogen Bonding
/ Isomerism
/ Ligands
/ luminescence
/ metal-organic frameworks
/ Models, Molecular
/ Molecular Structure
/ thermal properties
/ Triazoles - chemistry
/ X-ray diffraction analysis
2018
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The Positional Isomeric Effect on the Structural Diversity of Cd(II) Coordination Polymers, Using Flexible Positional Isomeric Ligands Containing Pyridyl, Triazole, and Carboxylate Fragments
by
Narea, Pilar
, Brito, Iván
, Cisterna, Jonathan
, Cárdenas, Alejandro
, Llanos, Jaime
, Araneda, Catherine
in
Cadmium - chemistry
/ Carboxylic Acids - chemistry
/ Cd(II) complexes
/ Coordination Complexes - chemical synthesis
/ Coordination Complexes - chemistry
/ Crystallography, X-Ray
/ Hydrogen Bonding
/ Isomerism
/ Ligands
/ luminescence
/ metal-organic frameworks
/ Models, Molecular
/ Molecular Structure
/ thermal properties
/ Triazoles - chemistry
/ X-ray diffraction analysis
2018
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The Positional Isomeric Effect on the Structural Diversity of Cd(II) Coordination Polymers, Using Flexible Positional Isomeric Ligands Containing Pyridyl, Triazole, and Carboxylate Fragments
by
Narea, Pilar
, Brito, Iván
, Cisterna, Jonathan
, Cárdenas, Alejandro
, Llanos, Jaime
, Araneda, Catherine
in
Cadmium - chemistry
/ Carboxylic Acids - chemistry
/ Cd(II) complexes
/ Coordination Complexes - chemical synthesis
/ Coordination Complexes - chemistry
/ Crystallography, X-Ray
/ Hydrogen Bonding
/ Isomerism
/ Ligands
/ luminescence
/ metal-organic frameworks
/ Models, Molecular
/ Molecular Structure
/ thermal properties
/ Triazoles - chemistry
/ X-ray diffraction analysis
2018
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The Positional Isomeric Effect on the Structural Diversity of Cd(II) Coordination Polymers, Using Flexible Positional Isomeric Ligands Containing Pyridyl, Triazole, and Carboxylate Fragments
Journal Article
The Positional Isomeric Effect on the Structural Diversity of Cd(II) Coordination Polymers, Using Flexible Positional Isomeric Ligands Containing Pyridyl, Triazole, and Carboxylate Fragments
2018
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Overview
To systematically investigate the influence of the positional isomeric effect on the structures of polymer complexes, we prepared two new polymers containing the two positional isomers ethyl 5-methyl-1-(pyridin-3-yl)-1H-1,2,3-triazole-3-carboxylate (L1) and ethyl-5-methyl-1-(pyridin-3-yl)-1H-1,2,3-triazole-4-carboxylate (L2), as well as Cd(II) ions. The structures of the metal–organic frameworks were determined by a single crystal XRD analysis. The compound [Cd(L1)2·4H2O] (1), is a hydrogen bond-induced coordination polymer, whereas the compound [Cd(L2)4·5H2O]n (2) is a three-dimensional (3-D) coordination polymer. Their structures and properties are tuned by the variable N-donor positions of the ligand isomers. This work indicates that the isomeric effect of the ligand isomers plays an important role in the construction of the Cd(II) complexes. In addition, the thermal and luminescent properties are reported in detail.
Publisher
MDPI,MDPI AG
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