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Synthesis and Crystal Structure of Diaquodiformatodi(4-methyl pyridine)copper(II)
Corresponding Author(s) : Sami Klaib
Asian Journal of Chemistry,
Vol. 26 No. 24 (2014)
Abstract
Ternary complex i.e., diaquodiformatodi(4-methyl pyridine)copper(II) has been prepared and the solid state structure was determined using X-Ray structure analysis. The molecule crystallizes in monoclinic space group P21/c with a = 9.6070 (5) Å, b = 11.5441 (5) Å, c = 7.7163 (5) Å, a = 90, b = 98.045 (4), g = 90, V = 847.348 A3. The structural data are consistent with the presence of Jahn-Teller distortion in the overall hexacoordinate octahedral geometry of the molecule. The crystal packing is through an extensive hydrogen bonding and ring-ring p-p interactions resulting in a supra molecular frame work.
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References
(a) M.A. Dewey, D.A. Knight, D.P. Klein, A.M. Arif and J.A. Gladysz, Inorg. Chem., 30, 4995 (1991); (b) A.G. Canty, N.J. Minchin, B.W. Skelton and A.H. White, J. Chem. Soc., Dalton Trans., 2205 (1986) (d) G.R. Newkome, W.E. Puckett, G.E. Kiefer, V.K. Gupta, F.R. Fronezek, D.C. Pantaleo, G.L. Mccluro, J.B. Sempson and W.A. Deutsch, Inorg. Chem., 24, 811 (1985); (e) H. Lang, K. Rößler, D. Taher, R. Holze and B. Walfort, Inorg. Chim. Acta, 361, 1659 (2008); (f) D. Taher, M. Al-Noaimi, S. Mohammad, J.F. Corrigan, D.G. MacDonald and M. El-khateeb, Inorg. Chim. Acta, 363, 4134 (2010).
(a) C. Musetti, A.A. Nazarov, N.P. Farrell and C. Sissi, Chem. Med. Chem., 6, 1283 (2011); (b) H. Henschel, J.-P. Klöckner, I.A. Nicholls and M.H. Prosenc, J. Mol. Struct., 1007, 45 (2012); (c) D. Taher, F.F. Awwadi and M.H. Kailani, Acta Crystallogr., 69E, o1164 (2013).
(a) R.H. Fish, E. Baralt and H.S. Kim, Organometallics, 10, 965 (1991); (b) D. Taher, M.E. Thibault, D. DiMondo, M. Jennings and M. Schlaf, Chem. Eur. J., 15, 10132 (2009); (c) M. Schlaf, M.E. Thibault, D. DiMondo, D. Taher, E. Karimi and D. Ashok, Int. J. Chem. Reactor Eng., 7, A34 (2009).
A.L. Seligson and W.C. Trogler, J. Am. Chem. Soc., 113, 2520 (1991).
(a) Y. Du, A.L. Thompson, N. Russell and D. O'Hare, Dalton Trans., 39, 3384 (2010); (b) K.L. Yao, S.W. Fan, Z.L. Liu and Y.L. Li, Physica B, 395, 84 (2007); (c) S.M. Aris, D.A. Gewirtz, J.J. Ryan, K.M. Knott and N.P. Farrell, Biochem. Pharmacol., 73, 1749 (2007); (d) J.L. Manson, J.G. Lecher, J. Gu, U. Geiser, J.A. Schlueter, R. Henning, X. Wang, A.J. Schultz, H.-J. Koo and M.-H. Whangbo, Dalton Trans., 14, 2905 (2003).
M.J. Jedrzejas, R.L.R. Towns, R.J. Baker, S.A. Duraj and A.F. Hepp, Acta Crystallogr C, 50, 1442 (1994).
M.M. Borel, A. Busnot, F. Busnot and A. Leclaire, Thermochim. Acta, 31, 189 (1979).
P.R. Kamal, S.T. Spees, J. Indian Chem. Soc., 55, 871 (1978).
S. Perrier, T.C. Lau and J.K. Kochi, Inorg. Chem., 29, 4190 (1990).
H.-B. Xu, L.-K. Yan, Z.-M. Su, S.-M. Yue, H.-J. Zhang, K.-Z. Shao and Y.-H. Zhao, Transition Met. Chem., 29, 471 (2004).
M.J. Sánchez-Moreno, D. Choquesillo-Lazarte, J.M. González-Pérez, R. Carballo, J.D. Martín-Ramos, A. Castiñeiras and J. Niclós-Gutiérrez, Polyhedron, 22, 1039 (2003).
SHELXTL, Version 5.1, Siemens Industrial Automation, Inc., (1997).