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2009, Number 1

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TIP Rev Esp Cienc Quim Biol 2009; 12 (1)

Un Estudio Teórico AIM (ATOMS IN MOLECULES) Con el fin de evidenciar la existencia de Puentes de Hídrogeno en Varios derivados Tiazólicos

Sánchez-Viesca F, Cortés F, Gómez MR, Berros M
Full text How to cite this article

Language: Spanish
References: 14
Page: 20-26
PDF size: 178.86 Kb.


Key words:

Hydrogen bonds, molecular structure, nuclear magnetic resonance, thiazoles.

ABSTRACT

A review of our papers dealing with the synthesis and spectroscopy of 24 new thiazole derivatives has been made. Many of these compounds presented paramagnetic deviations in their 1H NMR spectra, and this was attributed to hydrogen bond formation. Now we present a theoretical study based on ab initio calculations with the aim of obtaining theoretical evidence about these interactions, on the basis of electronic density, using Bader’s method (AIM). The results checked with the rotamery proposed in our papers and with the existence of C-H---O and C-H---Cl hydrogen bonds. The formation of C-H---N semibonds was also found, and it is explained in detail. Thus, the nature of the atomic interactions found via nuclear magnetic resonance has been firmly established.


REFERENCES

  1. Sánchez-Viesca, F. & Gómez, M.R. Síntesis y estudio espectroscópico de nuevos diaril-tiazoles. Rev. Soc. Quím. Méx.39, 125-129 (1995).

  2. Sánchez-Viesca, F. & Gómez, M.R. Síntesis y rotámeros preferidos de nuevos diaril-tiazoles polisustituídos. Rev. Soc. Quím. Méx.42, 199-202 (1998).

  3. Sánchez-Viesca, F. & Berros, M. Síntesis y rotamería en nuevos 4-aril-tiazoles. Rev. Latinoamer. Quím. 27, 26-32 (1999).

  4. Sánchez-Viesca, F. & Berros, M. Desviaciones paramagnéticas encontradas en los espectros de RMN de 1H de 4-ariltiazoles polisustituídos. TIP Rev. Esp. Cienc. Quím. Biol. 4(2), 100-104 (2001).

  5. Bernès, S., Berros, M., Rodríguez de Barbarín, C. & Sánchez- Viesca, F. Flat versus twisted rotamers of 2,4- disubstituted tiazoles. Acta Crystallographica, C58, o151-o153 (2002).

  6. Sánchez-Viesca, F. & Berros, M. 1H NMR Evidence of C-H---O, C-H---N and C-H---Cl Hydrogen Bonds in new Thiazole Derivatives. Heterocycles, 57, 1869-1879 (2002).

  7. Sánchez-Viesca, F., Berros, M. & Gómez, M.R. Intramolecular Weak Hydrogen Bonds in Substituted 4-Arylthiazoles. Het. Comm.9, 165-170 (2003).

  8. Castro, M., Sánchez-Viesca, F., Cruz, J., Nicolás, I. & Berros, M. Puentes de hidrógeno intramoleculares en derivados tiazólicos. Un estudio teórico: Ab initio y DFT. TIP Rev. Esp. Cienc. Quím. Biol. 6(2), 74-80 (2003).

  9. Bader, R. F. W. A Bond Path: A Universal Indicator of Bonded Interactions. J. Phys. Chem. A102, 7314-7323 (1998).

  10. Cioslowski, J. & Mixon, S. T. Universality among topological properties of electron density associated with the hydrogen-hydrogen nonbonding interactions. Can. J. Chem.70, 443-449 (1992).

  11. Tselinskii, I. V., Levit, P. B. & Shlyapochnikov, V. A. Geometry of Molecular Biphenyl Derivatives. J. Gen. Chem. USSR. 62, 142-148 (1992).

  12. Koch, U. & Popelier, P. L. A. Characterization of C-H-O Hydrogen Bonds on the Basis of the Charge Density. J. Phys. Chem.99, 9747-9754 (1995).

  13. Cuevas, G. Hydrogen Bond Type Contributions to the Anomeric Effect in S-C-P(O) and S-C-P(S) Segments. J. Am. Chem. Soc.122, 692-698 (2000).

  14. Cortés-Guzmán, F., Hernández-Trujillo, J. & Cuevas, G. The Nonexistence of Repulsive 1,3-Diaxial Interactions in Monosubstituted Cyclohexanes. J. Phys. Chem. A 107, 9253-9256 (2003).




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TIP Rev Esp Cienc Quim Biol. 2009;12