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Prediction of Boiling Points of Ketones Using a Quantitative Structure-Property Relationship Treatment

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Adata set of 202 ketones was used to study a correlation of over 700 descriptors with boiling point using a Quantitative Structure-Property Relationship (QSPR) technique. The QSPR study was performed with the CODESSA (Comprehensive Descriptors for Structural and Statistical Analysis) program. Alarge part of the descriptors used in the study, was based on quantum-chemical calculations. A four parameter model with the squared correlation coefficient R2 = 0.9907 and the Fisher ratio F = 5231 was obtained. The final QSPR model includes one topological and three quantum-chemical descriptors: Kier&Hall index (order 1), Total molecular two-center resonance energy divided by the number of atoms, Maximum net atomic charge for a C atom (Gaussian NBO), and Average valency of a C atom. The four-descriptor relationship can be recommended for prediction of the boiling point of ketones.
Rocznik
Strony
1491--1499
Opis fizyczny
Bibliogr. 34 poz., rys.
Twórcy
autor
  • Department of Chemistry, A. Mickiewicz University, Grunwaldzka 6, 60-780 Poznań, Poland
Bibliografia
  • 1. Rechsteiner C.E., Handbook of Chemical Property Estimation Methods, Lyman W.J., Reehl W.F., Rosenblatt D.H., Eds.; McGrowHill: NY, Chapter 12 (1982).
  • 2. Wold S. and Sjöström M., Chemometr. Inteil. Lab. Syst., 44, 3 (1998).
  • 3. Katritzky A.R., Lobanov V.S. and Karelson M., Chem. Soc. Rev., 24, 279 (1995).
  • 4. Wiener H., J. Am. Chem. Soc., 69, 17 (1947).
  • 5. Stanton D.T., Jurs P.C. and Hicks M.G., J. Chem. Inf. Comput. Sci., 31, 301 (1991).
  • 6. Stanton D.T., Egolf L.M., Jurs P.C. and Hicks M.G., J. Chem. Inf. Comput. Sci., 32, 306 (1992).
  • 7. Murugan R., Grendze M.P., Toomey J.E., Katritzky A.R., Karelson M., Lobanov V.S. and Rachwal P., CHEMTECH, 24, 17 (1994).
  • 8. Katritzky A.R., Lobanov VS., Karelson M., Murugan R., Grendze M.P. and Toomey J.E., Rev. Roum. Chim.,41, 851 (1996).
  • 9. Egolf L.M. and Jurs P.C., J. Chem. Inf Comput. Sei., 33, 616 (1993).
  • 10. Le T.D. and Weeres J.G., J. Phys. Chem., 99, 6739 (1995).
  • 11. Espinosa G., Yaffe D., Cohen Y., Arenas A. and Giralt F., J. Chem. Inf. Comput. Sci., 40, 859 (2000).
  • 12. Katritzky A.R., Mu L., Lobanov V.S. and Karelson M., J. Phys. Chem, 100, 10400 (1996).
  • 13. Katritzky A.R., Lobanov V.S. and Karelson M., J. Chem. Inf. Comput. Sci., 38, 28 (1998).
  • 4. Stanton D.T., J. Chem. Inf. Comput. Sei., 40, 81 (2000).
  • 15. Katritzky A.R., Lobanov V.S. and Karelson M., CODESSA, Reference Manual, University of Florida 1994.
  • 16. Karelson M., Maran U., Wang Y. and Katritzky A.R., Collect. Czech. Chem. Commun., 64,1551 (1999).
  • 17. Carlson R., Prochazka M.P. and Lundstedt T., Acta Chem. Scand., B42, 145 (1988).
  • 18. Dewar M.J.S., Zoebisch E.G., Healy E.F. and Stewart J.J.P., J. Am. Chem. Soc., 107, 3902 (1985).
  • 19. Gaussian 98, Revision A.10, Frisch M.J., Trucks G.W., Schlegel H.B., Scuseria G.E., Robb M.A., Cheeseman J.R., Zakrzewski V.G., Montgomery J.A., Jr., Stratmann R.E., Burant J.C., Dapprich S., Millam J.M., Daniels A.D., Kudin K.N., Strain M.C., Farkas O., Tomasi J., Barone V., Cossi M., Cammi R., Mennucci B., Pomelli C., Adamo C., Clifford S., Ochterski J., Petersson G.A., Ayala P.Y., Cui Q., Morokuma K., Salvador P., Dannenberg J.J., Malick D.K., Rabuck A.D., Raghavachari K., Foresman J.B., Cioslowski J., Ortiz J.V., Baboul A.G., Stefanov B.B., Liu G., Liashenko A., Piskorz P., Komaromi I., Gomperts R. Martin RL., Fox D.J., Keith T., Al-Laham M.A., Peng C.Y., Nanayakkara A., Challacombe M.. Gill P.M. W., Johnson B., Chen W., Wong M.W., Andres J.L., Gonzalez C., Head-Gocdon M.,` Replogle E.S. and Pople J.A., Gaussian, Inc., Pittsburgh PA, 2001.
  • 20. Szafran M., Wiad. Chem., 47,477 (1993).
  • 21. Randic M., J. Am. Chem. Soc., 97, 6609 (1975).
  • 22. Kier L.B. and Hall L.H., Molecular Connectivity in Chemistry and Drug Research, Academic Press. V (1976).
  • 23. Kier L.B. and Hall L.H., Molecular Connectivity in Structure-Activity Analysis, Research Studies Press , Letchworth (1986).
  • 24. Handbook of Chemistry and Physics, CRC Press, Cleveland OH, 1974, p. 112.
  • 25. Rohrbaugh R.H. and Jurs P.C., Anal. Chim. Acta., 199, 99 (1987).
  • 26. Stouch T.R. and Jurs P.C., J. Chem. Inf. Comput. Sci., 26, 4 (1986).
  • 27. Pearlman R.S., Physical Chemical Properties of Drugs, Eds.: Yalkowsky S.H., Sinkula A.A, Valvani S.C., Marcel Dekker Inc., NY, 1980, p. 321.
  • 28. Zefirov N.S., Kirpichenok M.A., Izmailov F.F. and Trofimov M.I., Dokl. Akad. NaukSSSR, 296, 883 (1987).
  • 29. Osmialowski K., Halkiewicz J., Radecki A. and Kaliszan R., J. Chromatogr., 346, 53 (1985).
  • 30. Osmialowski K., Halkiewicz J. and Kaliszan R., J. Chromatogr., 361, 63 (1986).
  • 31. Stanton D.T. and Jurs P.C., Anal. Chem., 62, 2323 (1990).
  • 32. Stanton D.T., Egolf L.M., Jurs P.C. and Hicks M.G., J. Chem. Inf. Comput. Sci., 32, 306 (1992).
  • 33. Karelson M., Lobanov V.S. and Katritzky A.R., Chem. Rev, 96, 1027 (1996).
  • 34. Reed A.E., Curtiss L.A. and Weinhold F., Chem. Rev., 88, 899 (1988).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ1-0022-0015
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