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Articles

A new supramolecular coordination compound of Mg(II) with chelidamic acid: Synthesis, spectroscopic, crystal structures, and thermal analysis

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Pages 515-520 | Received 19 Jun 2015, Accepted 01 May 2016, Published online: 05 Aug 2016

References

  • Zhou, G.-W. ; Guo, G.-C. ; Liu, B. ; Wang, M.-S. ; Cai, L.-Z. ; Huang, J.-S. Hydrogen-bonded frameworks of two metal complexes with chelidamic acid: Syntheses, structures and magnetism. Bull. Korean Chem. Soc. 2004, 25 , 676–680.
  • Zhao, X. ; Chen, Z. ; Zhao, B. ; Shi, W. ; Cheng, P. Crystal structures and luminescent properties of two novel coordination polymers containing Ln3+ and SO4 2− . Inorg. Chem. Commun. 2007, 10 , 1433–1436.
  • Gholivand, M. B. ; Azadbakht, A. A nano-structured Ni(II)–chelidamic acid modified gold nanoparticle self-assembled electrode for electrocatalytic oxidation and determination of methanol. Mater. Sci. Eng. C 2012, 32 , 1955–1962.
  • Boger, D. L. ; Hong, J. ; Hikota, M. ; Shida, M. Total synthesis of phomazarin. J. Am. Chem. Soc. 1999, 121 , 2471–2477.
  • Fessmann, T. ; Kilburn, J. D. Identification of sequence-selective receptors for peptides with a carboxylic acid terminus. Angew. Chem., Int. Ed. 1999, 38 , 1993–1996.
  • Nakatsuji, Y. ; Bradshaw, J. S. ; Tse, P.-K. ; Arena, G. ; Wilson, B. E. ; Wilson, N. K. ; Dalley, N. K. ; Izatt, R. M. New proton-ionizable macrocyclic ligands. Synthesis, basicity, reactions, and structures of two aza crown ethers containing the 4-hydroxypyridine unit. J. Chem. Soc., Chem. Commun 1985, 12 , 749–751.
  • Derikvand, Z. ; Nemati, A. ; Shokrollahi, A. ; Zarghampour, F. Synthesis, characterization, spectroscopic, crystal structures and solution studies of two coordination compounds of zinc(II) and iron(III) based on chelidamic acid and acridine. Inorg. Chim. Acta 2012, 392 , 362–373.
  • Derikvand, Z. ; Olmstead, M. M. ; Mercado, B. Q. ; Shokrollahi, A. ; Shahryari, M. Solution and solid state studies of three new supramolecular compounds of zinc(II), nickel(II) and uranium(VI) with chelidamic acid and 9-aminoacridine. Inorg. Chim. Acta 2013, 406 , 256–265.
  • Zou, J.-P. ; Peng, Q. ; Zeng, G.-S. ; Wena, Z.-H. ; Xing, Q.-J. ; Chen, M.-H. ; Guo, G.-C. ; Huang, J.-S. Synthesis, crystal structure and optical properties of a novel 1D coordination polymer [Zn3(C7H2NO5)2·8(H2O)] n . J. Mol. Struct. 2009, 921 , 323–327.
  • Derikvand, Z. ; Talei, G. R. ; Aghabozorg, H. ; Olmstead, M. M. ; Azadbakht, A. ; Nemati, A. ; Gharamaleki, J. A. Synthesis, crystal structure, spectroscopic, electrochemical and antimicrobial properties of Cu(II) complex with the mixed ligands of 2,9-dimethyl-1,10-phenanthroline and 4-hydroxypyridine-2,6-dicarboxylic acid. Chin. J. Chem. 2010, 28 , 2167—2173.
  • Aghabozorg, H. ; Firoozi, N. ; Roshan, L. ; Eshtiagh-Hosseini, H. ; Salimi, A. R. ; Mirzaei, M. ; Ghanbari, M. ; Shamsipur, M. ; Ghadermazi. M. Supramolecular structure of calcium (II) based on chelidamic acid: An agreement between theoretical and experimental studies. J. Iran. Chem. Soc. 2011, 8 , 992–1005.
  • Zou, J.-P. ; Zeng, G.-S. ; Wen, Z.-H. ; Peng, Q. ; Xing, Q.-J. ; Chen, M.-H. ; Guo, G.-C. ; Huang, J.-S. Synthesis, crystal and band structures, and optical and magnetic properties of a 1D copper coordination polymer with chelidamic acid ligand. Inorg. Chim. Acta 2009, 362 , 4843–4848.
  • Mirzaei, M. ; Lippolis, V. ; Aragoni, M. C. ; Ghanbari, M. ; Shamsipur, M. ; Meyer, F. ; Demeshko, S. ; Pourmortazavi, M. Extended structures in copper(II) complexes with 4-hydroxypyridine-2,6-dicarboxylate and pyrimidine derivative ligands: X-ray crystal structure, solution and magnetic studies. Inorg. Chim. Acta 2014, 418 , 126–135.
  • Ghosh, S. K. ; Neogi, S. ; Carolina Sanudo, E. ; Bharadwaj, P. K. Water dimers connect [Cu(cda)(py)3] (cda = pyridine-4-hydroxy-2,6-dicarboxylate, py = pyridine) complex units to left- and right-handed helices that form a tubular coordination polymer through supramolecular bonding. Inorg. Chim. Acta 2008, 361 , 56–62.
  • Zhao, X.-Q. ; Zhao, B. ; Wei, S. ; Cheng. P. Synthesis, structures, and luminescent and magnetic properties of Ln−Ag heterometal−organic frameworks. Inorg. Chem. 2009, 48 , 11048–11057.
  • Derikvand, Z. ; Dorosti, N. ; Hassanzadeh, F. ; Shokrollahi, A. ; Mohammadpour, Z. ; Azadbakht, A. Three new supramolecular compounds of copper (II), cobalt (II) and zirconium (IV) with pyridine-2,6-dicarboxylate and 3,4-diaminopyridine: Solid and solution states studies. Polyhedron 2012, 43 , 140–152.
  • Thomas, R. ; Kulkarni, G. U. Hydrogen bonding in proton-transfer complexes of cytosine with trimesic and pyromellitic acids. J. Mol. Struct. 2008, 873 , 160–167.
  • Perpétuo, G. J. ; Janczak, J. Supramolecular architectures in crystals of melamine and aromatic carboxylic acids. J. Mol. Struct. 2008, 891 , 429–436.
  • Braga, D. ; Maini, L. ; Paganelli, F. ; Tagliavini, E. ; Casolari, S. ; Grepioni, F. Organometallic building blocks for crystal engineering. Synthesis, structure and hydrogen bonding interactions in [Fe(η5-C5H4-CH2(CH3)OH)2], [Fe(η5-C5H3(CH3)COOH)2], [Fe(η5-C5H4CH(CH3)NH(η5 -C5H4CH(CH3))] and in the diaminecyclohexane salt [Fe(η5-C5H4COO)2] 2−[(1S,2S)-(NH3)2C6H10]2+·2[H2O]. J. Organomet. Chem. 2001, 637 , 609–615.
  • Eppel, S. ; Bernstein, J. Statistical survey of hydrogen-bond motifs in crystallographic special symmetry positions, and the influence of chirality of molecules in the crystal on the formation of hydrogen-bond ring motifs. Acta Crystallogr. 2008, B64 , 50–56.
  • Masci, B. ; Thuery, P. Uranyl complexes with the pyridine-2,6-dicarboxylato ligand: New dinuclear species with μ-η2,η2-peroxide, μ2-hydroxide or μ2-methoxide bridges. Polyhedron 2005, 24 , 229–237.
  • Cui, S.-X. ; Zhao, Y.-L. ; Zhang, J.-P. ; Liu, Q. ; Zhang, Y. Structural and magnetic properties of metal complexes with pyridine-2,6-dicarboxylate and 5-(4-bromophenyl)-2,4′-bipyridine. Polyhedron 2009, 28 , 980–986.
  • Stoe & Cie . X–AREA: Program for the Acquisition and Analysis of Data, Version 1.30 ; Stoe & Cie GmbH: Darmstadt, Germany , 2005.
  • Stoe & Cie . X–RED: Program for Data Reduction and Absorption Correction, Version 1.28b ; Stoe & Cie GmbH: Darmstadt, Germany , 2005.
  • Stoe & Cie . X–SHAPE: Program for Crystal Optimization for Numerical Absorption Correction, Version 2.05 ; Stoe & Cie GmbH: Darmstadt, Germany , 2004.
  • Sheldrick, G. M. SHELX97. Program for Crystal Structure Solution ; University of Göttingen: Göttingen, Germany , 1997.
  • Sheldrick, G. M. SHELX97. Program for Crystal Structure Refinement ; University of Göttingen: Göttingen, Germany , 1997.
  • International Tables for X-ray Crystallography , Vol. C; Kluwer Academic Publisher: Dordrecht, The Netherlands , 1995.
  • Stoe & Cie . X-STEP32: Crystallographic Package, Version 1.07b ; Stoe & Cie GmbH: Darmstadt, Germany , 2000.
  • Sheldrick, G. M. A short history of SHELX . Acta Crystallogr. 2008, A64 , 112–122.
  • Shi, W. ; Chen, X.-Y. ; Zhao, B. ; Yu, A. ; Song, H.-B. ; Cheng, P. ; Wang, H.-G. ; Liao, D.-Z. ; Yan, S.-P. Construction of 3d−4f mixed-metal complexes based on a binuclear oxovanadium unit: Synthesis, crystal structure, EPR, and magnetic properties. Inorg Chem. 2006, 45 , 3949–3957.
  • Aghabozorg, H. ; Ghasemikhah, P. ; Ghadermazi, M. ; Soleimannejad, J. ; Adams, H. Triaqua (pyridine-2,6-dicarboxylato)magnesium(II) dehydrate. Acta Crysallogrt. 2007, E63 , m1487–m1489.
  • Derikvand, Z. ; Stoeckli-Evans, H. ; Nemati, A. 2,9-Dimethyl-1,10-phenanthrolin-1-ium (6-carboxy-4-hydroxypyridine-2-carboxylato-O,N,O)(4-hydroxypyridine-2,6-dicarboxylato-O,N,O) zincate(II) 2.35-hydrate: A protontransfer compound. Acta Crystallogr. 2012, E68 , m31–m32.

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