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Experimental and Theoretical Study on4-Phenyl-3-[(1,2,4-triazol-1-yl)methyl]-triazole-5-thione

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The title compound, 4-phenyl-3-[(1,2,4-triazol-1-yl)methyl]-triazole-5-thione, was synthesized and characterized by elemental analysis, IR and electronic spectra. Density functional theory calculations of the structure, natural bond orbital and thermodynamic functions of the title compound were performed at B3LYP/6-311G** level of theory. Vibrational frequencies were predicted, assigned, compared with the experimental values, and they are supported each other. Electronic absorption spectra were calculated by the time-dependent density functional theory (TD-DFT), which indicates that the two absorption bands aremainly derived from the contribution of bands pi--pi*. The calculation of the second order optical nonlinearity was carried out with PM3 semi-empirical method that resulted in the molecular hyperpolarizability equal to 4.397x10-30 esu.
Rocznik
Strony
325--333
Opis fizyczny
Bibliogr. 28 poz.
Twórcy
autor
autor
autor
autor
  • New Materials & Function Coordination Chemistry Laboratory, Qingdao University of Science and Technology, Qingdao Shandong 266042, P. R. China
Bibliografia
  • 1. Alvarez R., Velazquez S., San F., Aquaro S., De C., Perno C.F., Karlsson A., Balzarini J. and Camarasa M.J., J. Med. Chem., 37, 4185 (1994).
  • 2. Velazquez S., Alvarez R., Perez C., Gago F., De C., Balzarini J. and Camarasa M.J., Antivir. Chem.
  • 3. Genin M. J., Allwine D. A., Andersen D. J., Barbachyn M.R., Emmert D.E., Garmon S. A., Graber D.R.,Grega K.C., Hester J.B., Hutchinson D.K., Morris J., Reischer R.J., Ford C.W., Zurenko G.E., Hamel J.C., Schaadt R.D., Stapert D. and Yagi B.H., J. Med. Chem., 43, 953 (2000).
  • 4. Brockunier L.L., Parmee E.R., Ok H.O., Candelore M.R., Cascieri M.A., Colwell L.F., Deng L., Feeney W.P., Forrest M.J., Horn G.J., Maclntyre D.E., Tota L., Wyvratt M.J., Fisher M.H. and Weber A.E., Bioorg. Med. Chem. Lett., 10, 2111 (2000).
  • 5. Christian W., Torn0e C.C. and Morten M., J. Org. Chem., 67, 3057 (2002).
  • 6. Coats S.J., Link J.S., Gauthier D. and Hlasta D., J. Org. Lett., 7, 1469 (2005).
  • 7. Martin S.W., Romine J.L., Chen L., Mattson G., Antal-Zimanyi LA. and Poindexter G.S., J. Comb. Chem., 6, 35 (2004).
  • 8. Jian F.F., Bai Z.S., Li K. and Xiao H.L., Acta Cryst., E61, o393( 2005).
  • 9. Koch W. and Holthausen M.C.A., A Chemistry Guide to Density Functional Theory, Wiley-VCH: Weinheim, New York, 2000.
  • 10.Schreckenbach G. and Ziegler T., J. Phys. Chem., 99, 606 (1995).
  • 11 Parr R.R. and Yang R.G., Density Functional Theory ofAtoms andMolecules, Oxford University Press, New York, 1989, and references therein.
  • 12 Dewar M.J.S., Zoebisch E.G. and Healy E.F., J. Am. Chem. Soc., 107, 3902 (1985).
  • 13. Peng C., Ayala P. Y, Schlegel H.B. and Frisch M.J., J. Comput. Chem., 49, 17 (1996).
  • 14. Frisch M.J., Trucks G. W., Schlegel H.B., Scuseria G.E., Robb M.A., Cheeseman J.R., Montgomery J.A., Vreven Jr.,T., Kudin K.N., Burant J.C., Millam J.M., Iyengar S. S., Tomasi J., Barone V., Mennucci B., Cossi M., Scalmani G., Rega N., Petersson G.A., Nakatsuji H., Hada M., Ehara M., Toyota K., Fukuda R., Hasegawa J., Ishida M., Nakajima T., Honda Y, Kitao O., Nakai H., Klene M., Li X., Knox J.E., Hratchian H.P., Cross J.B., Adamo C., Jaramillo J., Gomperts R., Stratmann R.E., Yazyev O., Austin A.J., Cammi R., Pomelli C., Ochterski J.W., Ayala P. Y, Morokuma K., Voth G.A., Salvador P., Dannenberg J.J., Zakrzewski V.G., Dapprich S., Daniels A.D., Strain M.C., Farkas O., Malick D.K., Rabuck A.D., Raghavachari K., Foresman J.B., Ortiz J. V., Cui Q., Baboul A.G., Clifford S., Cioslowski J., Stefanov B.B., Liu G., Liashenko A., Piskorz P., Komaromi L, Martin R.L., Fox D.J., Keith T., Al-Laham M.A., Peng C. Y, Nanayakkara A., Challacombe M., Gili P.M.W., Johnson B., Chen W., Wong M.W., Gonzalez C. and Pople J.A, Gaussian Inc., Wallingford CT, 2004.
  • 15.  Runge E. and Gross E.K.U., Phys. Rev. Lett., 52, 997 (1984).
  • 16  Petersilka M., Gossmann UJ. and Gross E.K.U., Phys. Rev. Lett., 76, 1212 (1966).
  • 17  Bauernschmitt R. and Ahlrichs R., Chem. Phys. Lett., 256, 1996 (1996).
  • 18. Jamorski C., Casida M.E. and Salahub D.R., J. Chem. Phys., 104, 5134 (1996).
  • 19. Dewar M.J.S. and Thiel W., J. Am. Chem. Soc., 99, 4907 (1977).
  • 20. Stewart J.J.P., J. Comput. Chem., 10, 209 (1989).
  • 21. Stewart J.J.P., QCPE Program 455, 1983, Version 6.0, 1990.
  • 22. Xiao J.J., Zhang J., Yang D. and Xiao H.M., Acta Chim. Sinica, 60, 2 1 10 (2002).
  • 23. Pople J.A., Schlegel H.B., Krishnan R., Defrees D.J., Binkley J.S., Frisch M.J., Whiteside R.A., Hout R.F. and Hehre W. J., Int. J. Quant. Chem., Quantum Chem. Symp., 15, 269 (1981).
  • 24. Frish A., Nielsen A. B. and Holder A.J., Gaussview Users Manual, Gaussian Inc, Pittsburg, 2000.
  • 25. Bertolasi V., Gilli P., Ferretti V. and Gilli G., Chem-Eur. J., 2, 925 (1996).
  • 26. Haggman L., Lindblad C., Oskarasson H., Ulistronm A.S. and Persson L, J. Am. Chem. Soc., 125, 363 1 (2003).
  • 27. Olsen L. and Jorgensen P., in Modern Electronic Structure Theory, Vol. 2, World Science: River Edge, NJ, 1995.
  • 28. Fernando M. and Claudio O.A., Int. J. Quant. Chem., 103, 34 (2005).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ3-0006-0028
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