Home Synthesis and characterization of cyclo-tetrakis(μ-oxo-dimethylaminoethanolato-κN:κO)tetrakis(iodozinc) toluene solvate and Bis(dimethylaminoethanol)cadmium(II)iodide
Article
Licensed
Unlicensed Requires Authentication

Synthesis and characterization of cyclo-tetrakis(μ-oxo-dimethylaminoethanolato-κN:κO)tetrakis(iodozinc) toluene solvate and Bis(dimethylaminoethanol)cadmium(II)iodide

  • Naveed Alam , Muhammad Shahid EMAIL logo , Muhammad Mazhar , Muhammad Khawar Rauf , Kieran C. Molloy and Rohama Gill
Published/Copyright: July 18, 2014

Abstract

Two new metal(II) complexes formulated as [ZnI(dmae)]4·2(C7H8) 1 and CdI2(Hdmae)22 have been synthesized by using N,N-dimethylaminoethanol, a N,O donor ligand and characterized by melting point, elemental analysis, FT-IR spectroscopy, mass spectrometry and single crystal X-ray diffraction analysis. Complex 1 crystallizes in tetragonal I4(1)/a space group with μ2–O bridge between zinc atoms. The zinc atom is four coordinated with Zn–O 1.9315(13) and 1.9606(14) Å. The complex 2 is mononuclear with distorted octahedral geometry around the Cd(II) and contains two bidentate chelating Hdmae ligands and two iodine atoms, with Cd–O and Cd–N distances of 2.498(2) and 2.400(2) Å, respectively, and the weak O–H···I hydrogen bonds like interactions link the molecules to generate a 1D supramolecular structure.


Corresponding author: Muhammad Shahid, Department of Chemistry, Quaid-I-Azam University, Islamabad 45320, Pakistan, Phone: +92 322 5111064, E-mail:

Acknowledgments

N.A. and M.S. would like to thank “Higher Education Commission”, Islamabad, Pakistan for financial support through the “Indigenous 5000 Ph.D. Scholarship Scheme”.

References

[1] P. T. Moseley, A. M. Stoneham, D. E. Williams, Techniques and Mechanism in Gas Sensing, Adam Hilger, Bristol, UK 1991, pIII.Search in Google Scholar

[2] Y. K. Chung, M. H. Kim, W. S. Um, H. S. Lee, J. K. Song, S. C. Choi, K. M. Yi, M. J. Lee, K. W. Chung, Gas sensing properties of WO3 thick film for NO2 gas dependent on process condition. Sensor. Actuat. B1999, 60, 49.10.1016/S0925-4005(99)00243-9Search in Google Scholar

[3] G. Mugesh, H. B. Singh, R. J. Butcher, Synthesis and structural characterization of monomeric zinc(II), cadmium(II), and mercury(II) arenethiolates with a chelating oxazoline ligand. Eur. J. Inorg. Chem.1999, 1229.10.1002/(SICI)1099-0682(199908)1999:8<1229::AID-EJIC1229>3.0.CO;2-OSearch in Google Scholar

[4] E. A. Vinogradova, O. Y. Vassilyeva, V. N. Kokazay, P. J. Squaterilo, J. Reedijk G. A. Van Albada, W. Linert, S. K. Tiwary, P. R. Raithby, Symmetric and asymmetric trinuclear cores in novel μ-alkoxo-bridged mixed-metal CuII2ZnII complexes: synthesis from zerovalent copper and zinc oxide, structure and magnetism. New J. Chem.2001, 25, 949.Search in Google Scholar

[5] N. Z. Shaban, A. E. Ali, M. S. Masoud, Effect of cadmium and zinc ethanolamine complexes on rat brain monoamine oxidase-B activity in vitro. J. Inorg. Biochem.2003, 95, 141.Search in Google Scholar

[6] N. Masciocchi, M. Moret, A. Sironi, S. Bruni, F. Cariati, A. Pozzi, T. Manfredini, L. Menabue, G. C. Pellacani, Structural and spectroscopic correlations in cadmium(II) halide complexes of 2,2-dimethylpropane-1,3-diamine. Inorg. Chem.1992, 31, 1401.Search in Google Scholar

[7] U. Brand, H. Vahrenkamp, Zinc complexes of cyclohexane triamine ligands. Inorg. Chim. Acta.1992, 198–200, 663.Search in Google Scholar

[8] K. Othmer, Encyclopedia of chemical technology, 3rd ed., Wiley- Interscience, New York, USA Vol. 4, p. 397, 1978.Search in Google Scholar

[9] M. Shahid, M. Mazhar, M. Hamid, M. Zeller, P. O’Brien, M. A. Malik, J. Raftery, A. D. Hunter, Isostructural cage complexes of copper with zinc and cadmium for single source deposition of composite materials. New J. Chem.2009, 33, 2241.Search in Google Scholar

[10] N. Hollingsworth, G. A. Horley, M. Mazhar, M. F. Mahon, K. C. Molloy, P. W. Haycock, C. P. Myers, G. W. Critchlow, Tin(II) aminoalkoxides and heterobimetallic derivatives: the structures of Sn6(O)4(dmae)4, Sn6(O)4(OEt)4 and [Sn(dmae)2Cd(acac)2]2. Appl. Organomet. Chem.2006, 20, 687.Search in Google Scholar

[11] M. Shimizu, T. Katayama, T. Shiosaki, A. Kawabata, Photo-MOCVD of ZnO epitaxial films. J. Cryst. Growth1990, 99, 399.10.1016/0022-0248(90)90551-USearch in Google Scholar

[12] J. Akhtar, M. Afzaal, M. A. Vincent, N. A. Burton, J. Raftery, I. H. Hillier, P. O’Brien, Understanding the decomposition pathways of mixed sulfur/selenium lead phosphinato complexes explaining the formation of lead selenide. J. Phys. Chem. C2011, 115, 16904.10.1021/jp2053579Search in Google Scholar

[13] D. D. Perrin, W. L. F. Armarego, D. R. Perrin, Purification of laboratory chemicals. 1st ed., Pergamon Press, Oxford 1966.Search in Google Scholar

[14] G. M. Sheldrick, A short history of SHELX. Acta Cryst.2008, A64, 112.Search in Google Scholar

[15] G. M. Sheldrick, SHELX 97L, A computer program for crystal structure refinement, University of Gottingen, Gottingen, 1997.Search in Google Scholar

[16] L. J. Farrugia, WinGX suite for small-molecule single-crystal crystallography. J. Appl. Crystallogr.1999, 32, 837.Search in Google Scholar

[17] S. R. Petrusenko, V. N. Kokozei, A. N. Chernega, Interaction of zinc oxide with solutions of ammonium salts in 2-dimethylaminoethanol in the presence of ethylenediamine. Zh.Neorg.Khim. (Russ.) (Russ. J. Inorg. Chem.)1996, 41, 100.Search in Google Scholar

[18] H. M. M. Shearer, C. B. Spencer, Tetrameric methylzinc methoxide. Acta Cryst. B1980, 36, 2046.10.1107/S056774088000790XSearch in Google Scholar

[19] M. Dreiss, K. Merz, S. Rell, Synthesis and structure of siloxy-substituted ZnO aggregates having (ZnO)n (n = 2, 4) and Zn3O4 cores. Eur. J. Inorg. Chem.2000, 2517.10.1002/1099-0682(200012)2000:12<2517::AID-EJIC2517>3.0.CO;2-VSearch in Google Scholar

[20] D. Burrows, R. W. Harrington, M. F. Mahon, C. E. Price, The influence of hydrogen bonding on the structure of zinc coordination polymers. J. Chem. Soc.Dalton Trans.2000, 23, 3845.Search in Google Scholar

[21] S. Neeraj, S. Natarajan, C. N. R. Rao, Three-dimensional open-framework zinc phosphates with the structure-directing organic amines acting as ligands. New J. Chem.1999, 303.10.1039/a809030kSearch in Google Scholar

[22] X. H. Jiang, W. G. Zhang, Y. Zhong, S. L. Wang, Synthesis and structure of the cadmium (II) complex: [Cd(C5H5N)2(S2CO-n-C4H9)2]. Molecules2002, 7, 549.10.3390/70700549Search in Google Scholar

[23] M. A. S. Goher, F. A. Mautner, M. A. M. Abu-Youssef, A. K. Hafez, A. M. A. Badr, Synthesis and crystal structure of three new 2D polymeric cadmium(II) complexes of some pyridine derivatives with different cadmium(II)–azide topologies. J. Chem. Soc., Dalton Trans.2002, 3309.10.1039/B202007FSearch in Google Scholar

[24] K. Nakamoto, Infrared and raman spectra of inorganic and coordination compounds, Part B, Wiley, New York 1997.Search in Google Scholar


Supplemental Material

The online version of this article (DOI 10.1515/zkri-2013-1721) offers supplementary material, available to authorized users.


Received: 2013-12-19
Accepted: 2014-6-17
Published Online: 2014-7-18
Published in Print: 2014-8-1

©2014 by De Gruyter

Downloaded on 9.9.2025 from https://www.degruyterbrill.com/document/doi/10.1515/zkri-2013-1721/html
Scroll to top button