Diversity of coordination architecture of metal 4,5-dicarboxyimidazole

被引:258
作者
Fang, Rui-Qin [1 ]
Zhang, Xian-Ming [1 ]
机构
[1] Shanxi Normal Univ, Sch Chem & Mat Sci, Linfen 041004, Peoples R China
关键词
D O I
10.1021/ic052099m
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Seven complexes of metal 4,5-dicarboxyimidazole acid (H(3)dcbi), namely, [Cd(H(2)dcbi)(2)(H2O)(3)] center dot H2O (1.alpha), [Cd(H(2)dcbi)(2)( H2O)(2)] center dot 2H(2)O (1.beta), [Cd(H(2)dcbi)(2)(H2O)(2)] center dot 2H(2)O (1.gamma), [Cd(H(2)dcbi)(2)(H2O)(2)] ( 2), [Cd(Hdcbi)(H2O)] ( 3), [Cd-5(Hdcbi)(2)( dcbi)(2)(H2O)] center dot XH2O (4), [Cd-2(Hdcbi)(C2O4)] ( 5), [Ag-5(Hdcbi)(2)(CN)] ( 6), and [Mn(Hdcbi)(H2O)] ( 7), have been hydro(solvo) thermally synthesized by fine control over synthetic conditions such as stoichiometry, solvent, and pH value. X-ray single-crystal structural analyses reveal that they have rich structural chemistry ranging from mononuclear ( 1), one-dimensional ( 2), and two-dimensional ( 3 and 7) to three-dimensional ( 4 - 6), among which 1 crystallizes in three types (alpha, beta, and gamma) of polymorphs. Seven coordination modes of H(n)dcbi ranging from monodentate to mu(5) have been observed, among which four modes are found first. The coordination geometries of the Cd(II) sites vary from five-coordinate trigonal bipyramid and square pyramid, six-coordinate octahedron to seven-coordinate pentagonal bipyramid. Analyses of the synthetic conditions and structures of the Cd( II) complexes show that the influences of the solvent and the metal-to-ligand molar ratio are very important to the products and coordination modes of H(n)dcbi (n = 0, 1, 2). Studies of the coordination modes of H(n)dcbi and the structures of the Cd( II) complexes also reveal that the singly deprotonated H(2)dcbi generally coordinates in the monodentate imidazole-N or N,O-chelate mode to result in mononuclear structures, the doubly deprotonated Hdcbi coordinates in the mu(2), mu(3), or mu(4) mode to generate one-dimensional or two-dimensional structures, and the triply deprotonated dcbi can coordinate in the mu(5) mode to form three-dimensional structures. The cyanide was in situ formed via C - C bond cleavage of acetonitrile during the preparation of 6, which adopts a rare mu(4)-kC, kC: kN, kN mode to bridge four Ag(I) ions. The microporous three-dimensional framework of 4 is maintained after the removal of the guest molecules. Compounds 1 - 5 show strong violet emissions with maxima around 380 nm, tentatively attributed to the ligand-centered transition.
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页码:4801 / 4810
页数:10
相关论文
共 59 条
  • [41] A homochiral metal-organic porous material for enantioselective separation and catalysis
    Seo, JS
    Whang, D
    Lee, H
    Jun, SI
    Oh, J
    Jeon, YJ
    Kim, K
    [J]. NATURE, 2000, 404 (6781) : 982 - 986
  • [42] Very large breathing effect in the first nanoporous chromium(III)-based solids:: MIL-53 or CrIII(OH)•{O2C-C6H4-CO2}•{HO2C-C6H4-CO2H}x•H2Oy
    Serre, C
    Millange, F
    Thouvenot, C
    Noguès, M
    Marsolier, G
    Louër, D
    Férey, G
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2002, 124 (45) : 13519 - 13526
  • [43] Sheldrick G. M., 1998, SHELXTL CRYSTALLOGRA
  • [44] Spek A. L., 1999, PLATON MULTIPURPOSE
  • [45] Porous lanthanide-organic open frameworks with helical tubes constructed from interweaving triple-helical and double-helical chains
    Sun, YQ
    Zhang, J
    Chen, YM
    Yang, GY
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2005, 44 (36) : 5814 - 5817
  • [46] A new self-penetrating uniform net, (8,4) (or 86), containing planar four-coordinate nodes
    Tong, ML
    Chen, XM
    Batten, SR
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2003, 125 (52) : 16170 - 16171
  • [47] Novel layer-type triple salts of silver(i), AgCN•AgF•4AgCF3CO2•2L (L = MeCN or H2O)
    Wang, QM
    Mak, TCW
    [J]. CHEMICAL COMMUNICATIONS, 2000, (15) : 1435 - 1436
  • [48] Elliptic column consolidated by acetylide dianion, cyanide, and trifluoroacetate in a novel quadruple salt of silver(I)
    Wang, QM
    Mak, TCW
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2001, 123 (07) : 1501 - 1502
  • [49] Xiong RG, 2001, ANGEW CHEM INT EDIT, V40, P4422, DOI 10.1002/1521-3773(20011203)40:23<4422::AID-ANIE4422>3.0.CO
  • [50] 2-G