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Original Articles

Two 1D Chain Polymers Constructed by 5-Bromoisophthalate and Bis(Imidazole) Ligands: Syntheses, Crystal Structures, and Photoluminescence Properties

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Pages 974-979 | Received 22 Mar 2013, Accepted 10 Apr 2013, Published online: 04 Mar 2014

REFERENCES

  • Liu , C. S. , Yang , X. G. , Hu , M. , Du , M. and Fang , S. M. 2012 . A structural paradigm for 3-periodic semiregular (4(6).6(9))-hxg net with high-symmetry hexagonal geometry, constructed from the linear [Cd2NaO6(H2O)6] SBUs and a flexible 6,6’-dithiodinicotinate linker . Chem. Commun. , 48 : 7459 – 7461 .
  • Li , J. R. , Yu , Q. , Tao , Y. , Bu , X. H. , Ribas , J. and Batten , S. R. 2007 . Magnetic canting or not? Two isomorphous 3D Co2+ and Ni2+ coordination polymers with the rare non-interpenetrated (10,3)-d topological network, showing spin-canted antiferromagnetism only in the Co2+ system . Chem. Commun. , : 2290 – 2292 .
  • Kitagawa , S. , Noro , S. and Nakamura , T. 2006 . Pore surface engineering of microporous coordination polymers . Chem. Commun. , : 701 – 707 .
  • Jiang , J. J. , Zheng , S. R. , Liu , Y. , Pan , M. , Wang , W. and Su , C. Y. 2008 . Self-assembly of triple helical and meso-helical cylindrical arrays tunable by bis-tripodal coordination converters . Inorg. Chem. , 47 : 10692 – 10699 .
  • Wang , S. N. , Bai , J. F. , Li , Y. Z. , Pan , Y. , Scheer , M. and You , X. Z. 2007 . Synthesis, structures and properties of nickel(II) and cobalt(II) metal–organic frameworks based on a flexible tricarboxylate ligand H3TTG and different pyridyl-containing ligands . Cryst. Eng. Comm. , 9 : 1084 – 1095 .
  • Lu , W. , Jiang , G. L. and Lu , T. B. 2008 . Four 3D porous metal−organic frameworks with various layered and pillared motifs . Cryst. Growth Des. , 8 : 986 – 994 .
  • Du , M. , Zhang , Z. H. , Tang , L. F. , Zhao , X. J. and Batten , S. R. 2007 . Molecular Tectonics of Metal–Organic Frameworks (MOFs): a rational design strategy for unusual mixed-connected network topologies . Chem.–Eur. J. , 13 : 2578 – 2586 .
  • Han , L. , Bu , X. H. , Zhang , Q. C. and Feng , P. Y. 2006 . Solvothermal in situ ligand synthesis through disulfide cleavage: 3D (3,4)-connected and 2D square-grid-type coordination polymers . Inorg. Chem. , 45 : 5736 – 5738 .
  • Guo , Q.-Q. , Xu , C.-Y. , Zhao , B. , Jia , Y.-Y. , Hou , H.-W. and Fan , Y.-T. 2012 . Syntheses, characterizations, and properties of five interpenetrating complexes based on 1,4-benzenedicarboxylic acid and a series of benzimidazole-based linkers . Cryst. Growth Des. , 12 : 5439 – 5446 .
  • Liu , T. , Zhang , Y.-J. , Wang , Z.-M. and Gao , S. A . 2008 . 64-nuclear cubic cage incorporating propeller-like FeIII 8 apices and HCOO− edges . J. Am. Chem. Soc. , 130 : 10500 – 10501 .
  • Zhang , Y.-Z. , Wernsdorfer , W. G. , Pan , F. , Wanga , Z.-M. and Gao , S. 2006 . An azido-bridged disc-like heptanuclear cobalt(II) cluster: towards a single-molecule magnet . Chem. Commun. , : 3302 – 3304 .
  • Ma , S. , Simmons , J. M. , Yuan , D. , Li , J.-R. , Weng , W. , Liua , D.-J. and Zhou , H.-C. 2009 . A nanotubular metal–organic framework with permanent porosity: structure analysis and gas sorption studies . Chem. Commun. , : 4049 – 4051 .
  • Qiu , W. , Perman , J. A. , Wojtas , y. , Eddaoudia , M. and Zaworotko , M. J. 2010 . Structural diversity through ligand flexibility: two novel metal–organic nets via ligand-to-ligand cross-linking of “paddlewheels . Chem. Commun. , 46 : 8734 – 8736 .
  • Kesanli , B. , Cui , Y. , Smith , M. R. , Bittner , E. W. , Bockrath , B. C. and Lin , W. 2004 . Highly interpenetrated metal–organic frameworks for hydrogen storage . Angew. Chem. Int. Ed. , 44 : 72 – 75 .
  • Ma , L.-F. , Li , X.-Q. , Meng , Q.-L. , Wang , L.-Y. , Du , M. and Hou , H.-W. 2011 . Significant positional isomeric effect on structural assemblies of Zn(II) and Cd(II) coordination polymers based on bromoisophthalic acids and various dipyridyl-type coligands . Cryst. Growth Des. , 11 : 175 – 184 .
  • Ye , J. , Zhang , J. , Ning , G. , Tian , G. , Chen , Y. and Wang , Y. 2008 . Lanthanide coordination polymers constructed from dinuclear building blocks: novel structure evolution from one-dimensional chains to three-dimensional architectures . Cryst. Growth Des. , 8 : 3098 – 3106 .
  • Ye , J.-W. , Wang , J. , Zhang , J.-Y. , Zhang , P. and Wang , Y. 2007 . Construction of 2D lanthanide coordination frameworks: syntheses, structures and luminescent property . Cryst. Eng. Comm. , 9 : 515 – 523 .
  • Sheldrick . 1997 . SHELXS97, Program for the Refinement of Crystal Structures , Germany : University of Göttingen .
  • Sheldrick , G. M. 1996 . SADABS Software for Empirical Absorption Correction , Germany : University of Göttingen .
  • Sheldrick , G. M. 1997 . SHELXL97, Program for the Solution of Crystal Structures , Germany : University of Göttingen .
  • Ma , L. F. , Wang , Y. Y. , Liu , J. Q. , Yang , G. P. , Du , M. and Wang , L. Y. 2009 . Delicate substituent effect of isophthalate tectons on the structural assembly of diverse 4-connected metal–organic frameworks (MOFs) . Cryst. Eng. Comm. , 11 : 1800 – 1802 .
  • Yue , C. , Yan , C. , Feng , R. , Wu , M. , Chen , L. , Jiang , F. and Hong , M. 2009 . A polynuclear d10−d10 metal complex with unusual near-infrared luminescence and high thermal stability . Inorg. Chem. , 48 : 2873 – 2879 .
  • Yang , X. G. , Jia , L. R. and Fang , S. M. 2013 . Synthesis, structure, and luminescent properties of two Zn(II) complexes based on cis, cis, cis, cis-1,2,3,4-cyclopentanetracarboxylic acid . Synth. React. Inorg. Met.-Org. Nano-Met. Chem. , 43 : 325 – 331 .

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