Rare mercury coordination network containing left- and right-handed helical chains based on bis(pyridyl) ligands with long flexible spacer
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
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4. Counter-ion influence on the coordination mode of the 2,5-bis(4-pyridyl)-1,3,4-oxadiazole (bpo) ligand in mercury(ii) coordination polymers, [Hg(bpo)nX2]: X = I–, Br–, SCN–, N3– and NO2–; spectroscopic, thermal, fluorescence and structural studies
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1. Effect of pyridyl donors from organic ligands versus metalloligands on material design;Inorganic Chemistry Frontiers;2021
2. Mercury supramolecular architectures constructed from flexible unsymmetrical bis(pyridyl) ligands: Structural motif mediated by mercury-halide clusters, ligand conformations and non-covalent interactions;Polyhedron;2016-10
3. Synthesis, crystal structure, and characterization of two three-fold interpenetrating Co(II) coordination polymers based on 1,4-benzenedicarboxylic acid and length modulated bisimidazole ligands;Journal of Coordination Chemistry;2014-02-16
4. Influential Role of Geometrical Disparity of Linker and Metal Ionic Radii in Elucidating the Structural Diversity of Coordination Polymers Based on Angular Dicarboxylate and Bis-pyridyl Ligands;Crystal Growth & Design;2013-11-23
5. Synthesis, Structural Characterization, and Magnetic Properties of a New Series of Coordination Polymers: Importance of Steric Hindrance at the Coordination Sphere;Crystal Growth & Design;2012-08-08
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