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Estimation of Stability Constants of Coordination Compounds using Models Based on Topological Indices Cover

Estimation of Stability Constants of Coordination Compounds using Models Based on Topological Indices

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Open Access
|Mar 2009

References

  1. Dagani R. Toxicologists seek structure-activity links.1981;9:26-9.
  2. van de Waterbeemd H. Quantitative approaches to structure-activity relationship. In: Wermuth CG, editor. The practice of medical chemistry. London: Academic Press; 1996. p. 367-89.
  3. Wiener H. Structural determination of paraffin boiling points.1947;69:17-20.
  4. Trinajstić N. Chemical Graph Theory. 1edition. Boca Raton (FL): CRC Press; 1983.
  5. Todeschini R, Consonni V. Handbook of Molecular Deseciptors. Weinheim: Wiley, VCH; 2000.
  6. Konstantinova EV, Diudea MV. The Wiener polynomial derivatives and other topological indices in chemical research.2000;73:383-403.
  7. Lučić B, Miličević A, Nikolić S, Trinajstić N. Harary index - twelve years later.2002;75:847-68.
  8. Balaban AT, Mills D, Ivanciuc O, Basak SC. Reverse Wiener indices.2000;73:923-41.
  9. Rouvray DH. The modeling of chemical phenomena using topological indices.1987;8:470-80.
  10. Randić M. On history of the Randić index and emerging hostility toward chemical graph theory.2008;59:5-124.
  11. Irving H, Williams RJP. Order of stability of metal complexes.1948;162:746-7.
  12. Pearson RG. Hard and soft acids and bases.1963;85:3533-9.
  13. Sabolović J, Raos N. Critical evaluation of empirical force-field models for simulation of plasticity of copper(II) coordination.1990;9:1277-86.
  14. Sabolović J, Raos N. Simulation of plasticity of a copper(II) coordination polyhedron with a force field based on coulombic interactions: conformational analysis of copper(II) chelates with α-amino acids.1990;9:2419-27.
  15. Raos N, Niketić SR, Simeon VL. Conformational analysis of copper(II) chelates with epimeric amino acids.1982;16:1-19.
  16. Raos N, Simeon V. Conformtional analysis and hydration models of copper(II) threoninates and isoleucinates.1983;18:133-51.
  17. Brubaker G, Johnson DW. Quantitative estimates of steric effects. Intramolecular strain-energy effects on the stability and dissociation rate constants of polythia ether macrocycle complexes of copper(II).1984;23:1591-5.
  18. Hancock RD, McDougall GJ, Marsicano F. Empirical force field calculations of strain-energy contributions to the thermodynamics of complex formation. 3. Chelate effect in complexes of polyamines.1979;18:2847-52.
  19. Sigel H, Massaud SS, Corfu NA. Comparison of the extent of base backbinding in complexes of divalent metal ions with guanine (GMP), inosine (IMP) and adenosine 5'-monophosphate (AMP). The crucial role of N-7 basicity in metal ion-nucleic base recognition.1994;116:2958-71.
  20. Vinokurov EG, Bondar VV. Prediction of stability constants for Cr(III) and Cr(II) complexes.2003;29:66-72.
  21. Raos N. Estimation of stability constants of copper(II) chelates with amino acids by overlapping spheres method.2005;78:175-80.
  22. Miličević A, Raos N. Estimation of stability constants of copper(II) and nickel(II) chelates with 1,2-diaminoethanes by the overlapping spheres method.2005;78:525-34.
  23. Miličević A, Raos N. Estimation of stability constants of copper(II) bis-chelates by the overlapping spheres method.2006;79:281-90.
  24. Svetlitski R, Lomaka A, Karelson M. QSPR modelling of lanthanide-organic complex stability constants.2006;41:197-216.
  25. Gažo J. Structure and properties of some copper(II) coordination compounds. Distortion isomerism of Cu(II) compounds.1974;38:279-301.
  26. Grgas B, Nikolić S, Paulić N, Raos N. Estimation of stability constants of copper(II) chelates with-alkylated amino acids using topological indices.1999;72:885-95.
  27. Nikolić S, Raos N. Estimation of stability constants of mixed amino acid complexes with copper(II) from topological indices.2001;74:621-31.
  28. Miličević A, Raos N. Estimation of stability of coordination compounds by using topological indices.2006;25:2800-8.
  29. Miličević A, Raos N. Prediction of stability of copper(II) and nickel(II) complexes with fructose-amino acids from the molecular graph models developed on amino acid chelates.2007;80:557-63.
  30. A. Miličević A, Raos N. Estimation of stability constants of copper(II) chelates with triamines and their mixed complexes with amino acids by using topological indices and the overlapping spheres method.2007;26:3350-6.
  31. Miličević A, Raos N. Influence of chelate ring interactions on copper(II) chelate stability studied by connectivity index functions.2008;112:7745-9.
  32. Miličević A, Raos N. Estimation of stability constants of copper(II) and nickel(II) chelates with dipeptides by using topological indices.2008;27:887-92.
  33. Miličević A, Raos N. Estimation of stability constants with connectivity index: development of bivariate and multivariate linear models for copper(II) chelates with oligopeptides., in press.
DOI: https://doi.org/10.2478/10004-1254-60-2009-1923 | Journal eISSN: 1848-6312 (formerly 0004-1254) | Journal ISSN: 0004-1254
Language: English, Croatian
Page range: 123 - 128
Published on: Mar 27, 2009
Published by: Institute for Medical Research and Occupational Health
In partnership with: Paradigm Publishing Services

© 2009 Nenad Raos, Ante Miličević, published by Institute for Medical Research and Occupational Health
This work is licensed under the Creative Commons License.