PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Discussion on the Complexing Ability of Macrocyclic Ligand, 12-Crown-4 with Li+ Cation in Some Binary Mixed Non-aqueous Solvents

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The complexation reaction of Li+ cation with 12-crown-4 (12C4) was studied in acetonitrile (AN)-methanol (MeOH), nitromethane (NM)-dimethylformamide (DMF) and propylencarbonate (PC)-dimethylformamide (DMF) binary mixtures and in neat tetrahydrofuran (THF) at different temperatures using the conductometric method. The conductance data show that in all solvent systems, the stoichiometry of the complex formed between 12-crown-4 and Li+ cation is 1:1. The stability of (12C4-Li)+ complex is sensitive to the solvent composition. The stability order of the complex in pure non-aqueous solvents was found to be: AN > MeOH > PC > THF > DMF. The values of thermodynamic parameters (deltaH deltaS c 0 c 0 , ) for formation of (12C4-Li)+ complex were obtained from temperature dependence of the stability constants and the results show that the thermodynamics of complexation reaction is affected by the nature and composition of the mixed solvents. A non-linear behaviour is observed between the thermodynamic parameters and the composition of the mixed solvents.
Słowa kluczowe
Rocznik
Strony
719--727
Opis fizyczny
Bibliogr. 28 poz.,rys.
Twórcy
autor
autor
  • Department of Chemistry, Faculty of Sciences, Ferdowsi University of Mashhad, Mashhad, Iran
Bibliografia
  • 1. Izatt R.M. and Nelson D.P., Science, 164, 443 (1969).
  • 2. Suzuki H., Yamada H., Sato K., Watanabe K., Tobe Y. and Kobiro K., Anal Chem., 65, 3404 (1993).
  • 3. Ryba O. and Pernak J., J. Electroanal Chem., 67, 321 (1976).
  • 4. Rong S.S. and Jengshang S., Analyst., 117, 1691 (1992).
  • 5. Sheu H.S. and Shin J.S., Anal Chim. Ada, 324, 125 (1996).
  • 6. Mousavi M.F., Sahari S., Alizadeh N. and Shamsipur M., Anal Chim. Acta, 414, 189 (2000).
  • 7. Flyes T.M. and Whiffield D.M., Can. J. Chem., 62, 507 (1984).
  • 8. Blair T.M., Cyncowski T. and Bachas L.G., Anal. Chem., 65, 945 (1993).
  • 9. Kuhand R. and Erni F., Anal Chem., 64, 2815 (1992).
  • 10. Frensdorff K.H., J. Am. Chem. Soc., 93,4684 (1971).
  • 11. Blasius E., Janzen K.R, Luxenburger H., Nguyen V.B., Kots H. and Stockenmer J., J. Chromatogr., 167, 307 (1987).
  • 12. Andersen J.D., Paulsen E.S. and Dearden D.V., Int. J. Mass Spectrom., 227, 63 (2003).
  • 13. Rounaghi G.H. and Popov A.I., Polyhedron, 5,1935 (1985).
  • 14. Rounaghi G.H. and Popov A.I., Inorg. Chim. Acta, 114, 145 (1986).
  • 15. Rounaghi G.H., Nezadali A. and Chamsaz M., Bull. Korean Chem. Soc., 21, 7, 685 (2000).
  • 16. Rounaghi G.H. And Sanavi K.R., Iran J. Chem. And Chem. Eng., 20,2 (2001).
  • 17. Rounaghi G.H., Boosaeedi F., Arbab Zawar Mh. and Sanavi K.R., Ind. Phenom. Macrocyclic Chem., 47, 101 (2003).
  • 18. Takeda Y., Yano H., Isubashi M. and Isozumi H., Bull. Chem. Soc. Jpn., 53, 72 (1980).
  • 19. Rounaghi G.H., Khazaee N. and Sanavi K.R., Polish J. Chem., 79, 1143 (2005).
  • 20. Rounaghi G.H., Kazemi S.M. and Soorgi M.H., Indian J. Chem., 40, 345 (2001).
  • 21. Genplot, Computer Graphic Service, USA (1989).
  • 22. Rounaghi G.H. and Eshagi Z., Talanta, 43, 1043 (1996).
  • 23. Rounaghi G.H. and Eshagi Z., Talanta, 44, 275 (1997).
  • 24. Matsura N., Umemoto K., Takeda Y. and Sasaku A., Bull. Chem. Soc. Japan, 49, 1240 (1975).
  • 25 Prasad N., Singh R., Prakash O. and Prakash S., Indian. J. Pure Appl. Phys., 14, 676 (1976).
  • 26. Krestov G.A. and Novosyolov N.P., "Ionic Sohation", (Ed.), T.K. Kemp., Ellis Horwood, New York (1994).
  • 27. Izutsu K., "Electrochemistry in Nonaqueous Solutions ", WILEY-VCH, Japan, (2001) pp (15, 213).
  • 28. Bushmann H.J., J. Solution Chem., 16, 181 (1987).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ1-0026-0005
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.