78
Views
4
CrossRef citations to date
0
Altmetric
Original Articles

Synthesis, Crystal Structure and Characterizations of a Novel 3D Coordinated Polymer [Gd2(tzda)3(H2O)5]n [H2tzda=(1,3,4‐Thiadiazole‐2,5‐diyldithio)diacetic Acid]Footnote

, , , , &
Pages 7-13 | Received 01 Nov 2006, Accepted 28 Nov 2006, Published online: 30 Mar 2007

References

  • Moulton , B. and Zaworotko , M. 2001 . From molecules to crystal engineering: supramolecular isomerism and polymorphism in network solids . Chem. Rev. , 101 ( 6 ) : 1629 – 1658 .
  • Biradha , K. , Domasevitch , K. V. , Moulton , B. , Seward , C. and Zaworotko , M. J. 1999 . Covalent and noncovalent interpenetrating planar networks in the crystal structure of {Ni(4,4′‐bipyridine)2 (NO3)2 · 2pyrene} n . Chem. Commun. , 14 : 1327 – 1328 .
  • Hernandez , M. L. , Barandika , M. G. , Urtiaga , M. K. , Cortes , R. , Lezama , L. and Arriortua , M. I. 2000 . Structural analysis and magnetic properties of the 2D compounds [M(N3)2(bpa)] n (M=Mn, Co or Ni; bpa=1,2‐bis(4‐pyridyl)ethane) . J. Chem. Soc., Dalton Trans. , 1 : 79 – 84 .
  • Robson , R. 2000 . A net‐based approach to coordination polymers . J. Chem. Soc., Dalton Trans. , 21 : 3735 – 3744 .
  • Yaghi , O. M. , O'Keeffe , M. , Ockwig , N. W. , Chae , H. K. , Eddaoudi , M. and Kim , J. 2003 . Reticular synthesis and the design of new materials . Nature. , 423 ( 6941 ) : 705 – 714 .
  • Bradshaw , D. , Prior , T. J. , Cussen , E. J. , Claridge , J. B. and Rosseinsky , M. J. 2004 . Permanent microporosity and enantioselective sorption in a chiral open framework . J. Am. Chem. Soc. , 126 ( 19 ) : 6106 – 6114 .
  • Min , K. S. and Suh , M. P. 2000 . Silver(I)‐polynitrile network solids for anion exchange: anion‐induced transformation of supramolecular structure in the crystalline state . J. Am. Chem. Soc. , 122 ( 29 ) : 6834 – 6840 .
  • Roesky , H. W. and Andruh , M. 2003 . The interplay of coordinative, hydrogen bonding and π−π stacking interactions in sustaining supramolecular solid‐state architectures: a study case of bis(4‐pyridyl)‐ and bis(4‐pyridyl‐N‐oxide) tectons . Coord. Chem. Rev. , 236 ( 1–2 ) : 91 – 119 .
  • Ghosh , S. K. , Ribas , J. and Bharadwaj , P. K. 2005 . Characterization of 3D metal‐organic frameworks formed through hydrogen bonding interactions of 2D networks with rectangular voids by CoII‐ and NiII‐pyridine‐2,6‐dicarboxylate and 4,4′‐bipyridine or 1,2‐di(pyridyl)ethylene . Cryst. Growth Des. , 5 ( 2 ) : 623 – 629 .
  • Baggio , R. and Perec , M. 2004 . Isolation and Characterization of a polymeric lanthanum citrate . Inorg. Chem. , 43 ( 22 ) : 6965 – 6968 .
  • Kurmoo , M. , Kumagai , H. , Akita‐Tanaka , M. , Inoue , K. and Takagi , S. 2006 . Metal‐organid frameworks from homometallic chains of nickel(II) and 1,4‐cyclohexanedicarboxylate connectors: ferrimagnet‐ferromagnet transformation . Inorg. Chem. , 45 ( 4 ) : 1627 – 1637 .
  • Gao , H. L. , Yi , L. , Ding , B. , Wang , H. S. , Cheng , P. , Liao , D. Z. and Yan , S. P. 2006 . First 3D Pr(III)‐Ni(II)‐Na(I) polymer and a 3D Pr(III) open network based on pyridine‐2,4,6‐tricarboxylic acid . Inorg. Chem. , 45 ( 2 ) : 481 – 483 .
  • Wen , L. L. , Dang , D. B. , Duan , C. Y. , Li , Y. Z. , Tian , Z. F. and Meng , Q. J. 2005 . 1D helix, 2D brick‐wall and herringbone, and 3D interpenetration d10 metal‐organic framework structure assembled from pyridine‐2,6‐dicarboxylic acid N‐oxide . Inorg. Chem. , 44 ( 20 ) : 7161 – 7170 .
  • Ghosh , S. K. and Bharadwaj , P. K. 2004 . Puckered‐boat conformation hexameric water clusters stabilized in a 2D metal‐organic framework structure built from Cu(II) and 1,2,4,5‐benzenetetracarboxylic acid . Inorg. Chem. , 43 ( 17 ) : 5180 – 5182 .
  • Eddaoudi , M. , Moler , D. B. , Li , H. , Chen , B. , Reineke , T. M. , O'Keeffe , M. and Yaghi , O. M. 2001 . Modular chemistry: secondary building units as a basis for the design of highly porous and robust metal‐organic carboxylate frameworks . Acc. Chem. Res. , 34 : 319 – 330 .
  • Ghosh , S. K. and Bharadwaj , P. K. 2004 . Structure of a discrete hexadecameric water cluster in a metal‐organic framework structure . Inorg. Chem. , 43 ( 22 ) : 6887 – 6889 .
  • Thirumurugan , A. and Rao , C. N. R. 2005 . 1,2‐, 1,3‐, and 1,4‐benzenedicarboxylates of Cd and Zn of different dimensionalities: process of formation of the three‐dimensional structure . J. Mater. Chem. , : 3852 – 3858 .
  • Abu‐Nawwas , A. A. H. , Cano , J. , Christian , P. , Mallah , T. , Rajaraman , G. , Teat , S. J. , Winpenny , R. E. P. and Yukawa , Y. 2004 . An Fe(III) wheel with a zwitterionic ligand: the structure and magnetic properties of [Fe(OMe)2(proline)]12[ClO4]12 . Chem. Commun. , : 314 – 315 .
  • Ghosh , S. K. , Ribas , J. and Bharadwaj , P. K. 2004 . Metal‐organic framework structures of Cu(II) with pyridine‐2,6‐dicarboxylate and different spacers: identification of a metal bound acyclic water tetramer . Cryst. Eng. Comm. , : 250 – 256 .
  • Go , Y. B. , Wang , X. , Anokhina , E. V. and Jacobson , A. J. 2005 . Influence of the reaction temperature and pH on the coordination modes of the 1,4‐benzenecarboxylate(BDC) ligand: a case study of the NiII(BDC)/2,2′‐bipyridine system . Inorg. Chem. , 44 ( 23 ) : 8265 – 8271 .
  • Zhu , H. F. , Zhang , Z. H. , Okamura , T.‐a. , Sun , W. Y. and Ueyama , N. 2005 . Syntheses, structure and properties of two‐dimensional alkaline earth metal complexes with flexible tripodal tricarboxylate ligands . Cryst. Growth Des. , 5 ( 1 ) : 177 – 182 .
  • Nie , G. C. 2003 . Synthesis of 2,5‐dimercapto‐1,3,4‐thiadiazole with triethylamine as a catalyst . Jingxi Huagong Zhongjianti , 33 ( 5 ) : 32 – 34 . (in Chinese)
  • Gao , Y. J. , Wu , Z. S. , Zhang , Z. J. and Xue , Q. J. 1998 . Study on tribological properties of 2,5‐dialkoxymethylthio‐1,3,4‐thiadiazoles . Wear. , 222 : 129 – 134 .
  • Pedregosa , J. C. , Casanova , J. , Alzuet , G. , Borrás , J. , García‐Granda , S. , Diaz , M. R. and Gutierrez‐Rodriguez , A. 1995 . Metal complexes of 5‐tertbutyloxycarbonylamido‐1,3,4‐thiadiazole‐2‐sulfonamide (B‐H2ats), a carbonic anhydrase inhibitor: synthesis and characterization of the copper(II) complex, crystal structures of B‐H2ats and the [Cu(B‐ats)(NH3)2]2 dimer complex . Inorg. Chim. Acta. , 232 : 117 – 124 .
  • Deacon , G. B. and Phillips , R. J. 1980 . Relationships between the carbon‐oxygen stretching frequencies of carboxylato complexes and the type of carboxylate coordination . Coord. Chem. Rev. , 33 ( 3 ) : 227 – 250 .
  • Ma , L. F. , Wang , L. Y. , Wang , J. G. , Wang , Y. F. and Feng , X. 2006 . Syntheses, structures and properties of Zn(II) and Co(II) complexes of N‐benzesulfonyl‐L‐glutamic acid ligand . Inorg. Chim. Acta , 359 : 2241 – 2245 .
  • Zhang , L. Z. , Xiong , Y. , Cheng , P. , Tang , G. Q. , Wang , L. J. and Liao , D. Z. 2001 . Encapsulation of a luminescent zinc complex in a nanoporous channel host . J. Mater. Chem. , : 2903 – 2905 .
  • Zhang , L. Z. , Cheng , P. , Shi , W. , Liao , D. Z. , Xiong , Y. and Tang , G. Q. 2005 . A two‐dimensional Cd(II) coordination polymer: [Cd(1,4‐BDOA)(1,10‐phen)] · H2O with strong blue fluorescent emission constructed by benzene‐1,4‐dioxydiacetate ligand . Inorg. Chem. Commun. , 8 : 361 – 364 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.