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The linewidths and pintegrated intensities of the d-d transitions in photoacoustic spectra of polyamine copper(II) complexes

Identyfikatory
Warianty tytułu
Konferencja
Workshop on Functional Materials FMA 2004, Athens, Greece, 23-26 September 2005
Języki publikacji
EN
Abstrakty
EN
Photoacoustic spectra of the d-d transitions for three different series of copper(II) complexes of spermidines Spn (Spn323, Spn333, Spn343), Spm (Spm323, Spm333, Spm343) and Spc (Spc323, Spc333) have been investigated. Replacements of distant atoms, the presence or absence of water molecule in the structure, the kind of ligands surrounding the metal(II) ions have a strong influence on the crystal field splitting and the intensities of the non-radiative transitions. Non-radiative processes are involved in important mechanisms of the dynamic interactions between the electrons and the lattice. Studies of the intensities of the non-radiative transitions provide a very important data for the thermodynamic states of these systems. Photoacoustic absorption band of the d-d transitions could be decomposed into three lines (due to the crystal field splitting) with different intensities, positions and linewidths. The integrated intensities may yield information about the number of non-radiative processes, while the linewidths about the mechanisms of the relaxation processes.
Słowa kluczowe
Wydawca
Rocznik
Strony
955--960
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
autor
autor
autor
autor
  • Solid State Section, Department of Physics, University of Athens, Panepistimioupoli, 15 784 Zagrafou, Athens, Greece, ngouskos@cc.uoa.gr
Bibliografia
  • [1] GUSKOS N., PAPADOPOULOS G.P., LIKODIMOS V., MAIR G.L.R, MAJSZCZYK J., TYPEK J., WABIA M., GRECH E., DZIEMBOWSKA T., PERKOWSKA A., J. Phys. D, 33 (2000), 1.
  • [2] GUSKOS N., PAPADOPOULOS G.P., LIKODIMOS V., MAJSZCZYK J., TYPEK J., WABIA M., GRECH E., DZIEMBOWSKA T., PERKOWSKA A., AIDINIS K, J. Appl. Phys., 90 (2001), 1436.
  • [3] GUSKOS N., TYPEK J., ANAGNOSTAKIS E.A., PASCHALIDIS D.G., submitted for publication to Rev. Adv. Mat. Sci. (Russia).
  • [4] TABOR C.W., TABOR H., Annu. Rev. Biochem., 53 (1984), 749.
  • [5] VERMA A., BOUTWELL R.K., [in:] Inhibition of Oilyamine Metabolism, Biological Significance and Basis for New Therapies, P. P. McCann, A. E. Pegg, and A. Sjoredsma (Eds.), Academic, Orlando, 1987, p. 113.
  • [6] LOMZIK L., [in:] Handbook of Metal-Ligand Interactions in Biological Fluids, Vol. I, G. Berton (Ed.), Dekker, New York, 1995, p. 686.
  • [7] GUSKOS N., PAPADOPOULOS G.P., MAJSZCZYK J., TYPEK J., WABIA M., LIKODIMOS V., PASCHALIDIS D.G., TOSSIDIS I.A., AIDINIS K., Acta Phys. Pol. A, 103 (2003), 301.
  • [8] GUSKOS N., MAJSZCZYK J., TYPEK J., WABIA M., ANAGNOSTAKIS E.A., Mol. Phys. Rep., 39 (2004), 66.
  • [9] GUSKOS N., GLENIS S., LIKODIMOS V., TYPEK J., FUKS H., WABIA M., SZYMCZAK R., LIN C.L., PERKOWSKA A., J. Appl. Phys., 93 (2003), 9834.
  • [10] GUSKOS N., MAJSZCZYK J., TYPEK J., GRECH E., KOLODZIEJ B., submitted for publication to Mat. Res. Bull.
  • [11] GUSKOS N., LIKODIMOS V., TYPEK J., FUKS H., GLENIS S., WABIA M., LIN C.L., GRECH E., DZIEMBOWSKA T., PERKOWSKA A., NATO Science series: Math. Phys. Chem., 76 (2002), 519.
  • [12] PAPADOPOULOS G.P., MAIR G.L.M., J. Phys. D: Appl. Phys., 25 (1992), 722.
  • [13] ADAMS M.J., HIGHFIELD J.G., KIRKBRIGHT G.F., Anal. Chem., 52 (1980), 1260.
  • [14] GUSKOS N., PAPADOPOULOS G.J., LIKODIMOS V., PATAPIS S., YARMIS D., PRZEPIERA A., PRZEPIERA K., MAJSZCZYK J., TYPEK J., WABIA M., AIDINIS K., DRAZEK Z., Mat. Res. Bull., 37 (2002), 1051.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW1-0022-0013
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