35
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

Synthesis, Characterization, and Crystal Structures of a Pair of Copper(II) and Zinc(II) Complexes Derived from 2‐Bromo‐4‐chloro‐6‐[(2‐isopropylaminoethylimino)methyl]phenol

&
Pages 547-551 | Received 05 Feb 2007, Accepted 01 Apr 2007, Published online: 14 Sep 2007

References

  • Mukhopadhyay , S. , Mandal , D. , Ghosh , D. , Goldberg , I. and Chaudhury , M. 2003 . Equilibrium studies in soluble involving nickel(II) complexes of flexidentate Schiff base ligands: Isolation and structural characterization of the planar red and octahedral green species involved in the equilibrium . Inorg. Chem. , 42 : 8439 – 8445 .
  • Lewiński , J. , Zachara , J. , Justyniak , I. and Dranka , M. 2005 . Hydrogen‐bond supramolecular structure of group 13 Schiff base complexes . Coord. Chem. Rev. , 249 : 1185 – 1199 .
  • Gallo , E. , Solari , E. , Re , N. , Floriani , C. , Chiesi‐Villa , A. and Rizzoli , C. 1997 . Carbon‐carbon bonds functioning as electron shuttles: The generation of electron‐rich manganese(II)‐Schiff base complexes and their redox chemistry . J. Am. Chem. Soc. , 119 : 5144 – 5154 .
  • Bernardo , K. , Leppard , S. , Robert , A. , Commenges , G. , Dahan , F. and Meunier , B. 1996 . Synthesis and characterization of new chiral Schiff base complexes with diiminobinaphthyl or diiminocyclohexyl moieties as potential enantioselective epoxidation catalysts . Inorg. Chem. , 35 : 387 – 396 .
  • Radecka‐Paryzek , W. , Patroniak , V. and Lisowski , J. 2005 . Metal complexes of polyaza and polyoxaaza Schiff base macrocycles . Coord. Chem. Rev. , 249 : 2156 – 2175 .
  • Paschke , R. , Liebsch , S. , Tschierske , C. , Oakley , M. A. and Sinn , E. 2003 . Synthesis and mesogenic properties of binuclear copper(II) complexes derived from salicylaldimine Schiff bases . Inorg. Chem. , 42 : 8230 – 8240 .
  • Lu , Z. , Yuan , M. , Pan , F. , Gao , S. , Zhang , D. and Zhu , D. 2006 . Syntheses, crystal structures, and magnetic characterization of five new dimeric manganese(III) tetradentate Schiff base complexes exhibiting single‐molecule‐magnet behavior . Inorg. Chem. , 45 : 3538 – 3548 .
  • Di Bella , S. , Fragalà , I. , Ledoux , I. , Diaz‐Garcia , M. A. and Marks , T. J. 1997 . Synthesis, characterization, optical spectroscopic, electronic structure, and second‐order nonlinear optical (NLO) properties of a novel class of donor‐acceptor bis(salicylaldiminato)nickel(II) Schiff base NLO chromophores . J. Am. Chem. Soc. , 119 : 9550 – 9557 .
  • Salmon , L. , Thuéry , P. and Ephritikhine , M. 2007 . Trinuclear Schiff base complexes with uranium(V) and copper(II) or zinc(II) ions . Polyhedron , 26 : 631 – 636 .
  • Sugimori , T. , Masuda , H. , Ohata , N. , Koiwai , K. , Odani , A. and Yamauchi , O. 1997 . Structural dependence of aromatic ring stacking and related weak interactions in ternary amino acid‐copper(II) complexes and its biological implication . Inorg. Chem. , 36 : 576 – 583 .
  • Henkel , G. and Krebs , B. 2004 . Metallothioneins: zinc, cadmium, mercury, and copper thiolates and selenolates mimicking protein active site features–structural aspects and biological implications . Chem. Rev. , 104 : 801 – 824 .
  • Ibrahim , M. M. , Seebacher , J. , Steinfeld , G. and Vahrenkamp , H. 2005 . Tris(thioimidazolyl)borate‐zinc‐thiolate complexes for the modeling of biological thiolate alkylations . Inorg. Chem. , 44 : 8531 – 8538 .
  • Dutta , S. , Bendre , R. , Padhye , S. , Ahmed , F. and Sarkar , F. 2005 . Synthesis, antioxidant properties and antiproliferative activities of tetrameric copper and copper‐zinc metal complexes of catecholamine Schiff base ligand . Synth. React. Inorg. Met.‐Org. Nano‐Met. Chem. , 35 : 3 – 10 .
  • Patel , R. N. 2005 . Synthesis, spectroscopy, and SOD activity of some imidazolate‐bridged copper(II) complexes . Synth. React. Inorg. Met.‐Org. Nano‐Met. Chem. , 34 : 1041 – 1055 .
  • Osowole , A. A. , Kolawole , G. A. and Fagade , O. E. 2005 . Synthesis, physicochemical, and biological properties of nickel(II), copper(II), and zinc(II) complexes of an unsymmetrical tetradentate Schiff base and their adducts . Synth. React. Inorg. Met‐Org. Nano‐Met. Chem. , 35 : 829 – 836 .
  • Chohan , Z. H. and Pervez , H. 1993 . Studies on biologically active complexes of nickel(II), copper(II) and zinc(II) with tridentate NNO, NNS and NNN donor pyrazine derived ligands . Synth. React. Inorg. Met‐Org. Nano‐Met. Chem. , 23 : 1061 – 1071 .
  • Bruker, SMART and SAINT . 2002 . Madison, Wisconsin, , USA : Bruker AXS Inc. .
  • Sheldrick , G. M. 1996 . “ SADABS ” . In Program for Empirical Absorption Correction of Area Detector Germany : University of Göttingen .
  • Sheldrick , G. M. “ SHELXTL V5.1 ” . In Software Reference Manual Madison, Wisconsin : Bruker AXS, Inc. .
  • Wei , Y‐J. and Wang , F‐W. 2006 . Syntheses, characterization, and crystal structures of two structurally similar Schiff base cobalt(II) complexes . Synth. React. Inorg. Met.‐Org. Nano‐Met. Chem. , 36 : 723 – 727 .
  • Sun , Y‐X. 2006 . Synthesis, crystal structures and antibacterial activities of two Schiff base copper(II) complexes . Synth. React. Inorg. Met.‐Org. Nano‐Met. Chem. , 36 : 621 – 625 .
  • You , Z‐L. and Jiao , Q‐Z. 2006 . Synthesis, crystal structures and antibacterial activities of two Schiff base zinc(II) complexes . Synth. React. Inorg. Met‐Org. Nano‐Met. Chem. , 36 : 713 – 717 .
  • Li , L‐Z. and You , Z. 2007 . Dibromo{2‐[2‐(ethylamino)ethyliminomethyl]‐4‐nitrophenolato}zinc(II) . Acta Crystallogr. , E63 : m607 – m609 .
  • Huang , Y. , Shen , H. and Long , S. 2002 . Synthesis, characterization, and biological activities of Schiff base complexes derived from methyl‐substituted salicylaldehyde and D‐glucosamine, ML2 (M=Cu(II), Zn(II), Fe(II), Co(II), Ni(II); L=3‐ or 4‐methylsalicylaldehyde d‐Glucoseimine) . Synth. React. Inorg. Met‐Org. Nano‐Met. Chem. , 32 : 1611 – 1624 .
  • Uçan , S. Y. , Uçan , M. and Mercimek , B. 2005 . Synthesis and characterization of new Schiff bases and their cobalt(II), nickel(II), copper(II), zinc(II), cadmium(II) and mercury(II) complexes . Synth. React. Inorg. Met–Org. Nano–Met. Chem. , 35 : 417 – 421 .

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.