Synthesis, Spectroscopic and Physico-chemical Studies and X-Ray Structure determination of a Metal transitions Complexes from ligand generated by benzoylpyridine

Journal Title: IOSR Journal of Applied Chemistry (IOSR-JAC) - Year 2018, Vol 11, Issue 1

Abstract

Metals transition complexes, [M(Li )(H2O)2] . (X)2 . (H2O)n, (M= Mn, Ni, Cu or Zn; i=1 or 2; n=0, ½, 1 or 2) where L1 is the neutral tridentate Schiff base (E)-N 1 -(2-(phenyl(pyridin-2-yl)methyleneamino)ethyl)ethane1,2-diamine and L2 is the neutral tetradentate Schiff base N-(phenyl(pyridine-2-ylmethylene)-2-(2-(2- (phenyl(pyridine-2-yl)methyleneamino)ethoxy)ethoxy)ethanamine both derived from benzoylpyridine. All these complexes were synthesized and characterized by physicochemical methods and spectroscopic studies. Both ligands are coordinated to the central atom as tetradentate through four nitrogen atoms. Each metal ion is also coordinated with two water molecules yielding octahedral complexes. The single crystal X-ray determination was also used to establish the structure of the complex (2) formulated as [Ni(L1 )(H2O)2] . (Cl)2. The asymmetric unit contains one molecule of the complex and two uncoordinated chloride anions. The complex crystallizes in the triclinic space group Pī with unit cell dimensions a = 8.590 (1) Å, b = 8.786 (1) Å, c = 13.134 (1) Å,  = 88.684 (1)°,  = 76.883 (1)°,  = 86.789 (1)°, V = 963.81 (17) Å3 , Z = 2, R1 = 0.0312 and wR2 = 0.0762. The coordination polyhedron around the Ni atom is best described as a distorted octahedron.

Authors and Affiliations

Djiby LO, Ibrahima Elhadj THIAM, Moussa DIENG, Mouhamadou Moustapha SOW, Ousmane DIOUF, Mohamed GAYE

Keywords

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  • EP ID EP413934
  • DOI 10.9790/5736-1101010512.
  • Views 190
  • Downloads 0

How To Cite

Djiby LO, Ibrahima Elhadj THIAM, Moussa DIENG, Mouhamadou Moustapha SOW, Ousmane DIOUF, Mohamed GAYE (2018). Synthesis, Spectroscopic and Physico-chemical Studies and X-Ray Structure determination of a Metal transitions Complexes from ligand generated by benzoylpyridine. IOSR Journal of Applied Chemistry (IOSR-JAC), 11(1), 5-12. https://www.europub.co.uk/articles/-A-413934