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INTERBAND ELECTRON TRANSITIONS IN THE ALLOYED C60 FILMS WITH THE IONIC DEFECT FORMATION

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Abstract

The spectral dependence of photoluminescence and optical conductivity for the solid C60 and Cd-C60 films (with the admixture of C70 fullerenes) are studied under irradiation by argon ions with different doses.

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References

  1. Mikuushkin V. M., Shnitov V.V. Transformation of fullerite structure under the action of electron beams. Fiz.Tv.Tela (in Russian) 1997; 39: 187–190.

    Google Scholar 

  2. Gordeev Yu.S, Mikuushkin V.M., Shnitov V.V. Spectra of elementary excitations of C60 fullerite and influence on their of electron irradiation. Fiz.Tv.Tela (in Russian) 2000; 42: 371–377.

    Google Scholar 

  3. Dmytrenko O.P., Kulish NP, Prylutskyy Yu.I., Belyi NM, Shlapatskaya VV, Shpilevskiy E.M., Poroshin V.G., Scharff P. Radiation damages and optical properties of solid C60 films with cuprum. Metallofiz., Nov. Technol. (in Russian) 2004; 20: 1051–1061.

    Google Scholar 

  4. Golovin Yu.I., Ivanova M.A., Lopatin D.V., Nikolaev R.K., Umrikhin A.V. Influence of lowdose -irradiation on the conductivity of solid C60. Fiz.Tv.Tela (in Russian) 2004; 46: 2109–2110.

    Google Scholar 

  5. Mikuushkin V.M., Shnitov V.V., Gordeev Yu.S., Molodtsov S.L., Vyalykh D.V. Photoemission resonance and its decay in the process of destruction of C60 fullerite molecular structure by synchroton irradiation. Fiz.Tv.Tela (in Russian) 2004; 46: 2233–2237.

    Google Scholar 

  6. Makarets M.V., Prylutskyy Yu.I, Zaloyilo O.V., Scharff P. Fragmentation of free and supported C60 fullerenes by ion beam. Full., Nanotubes & Carbon Nanostruct.2005; 13: 339–346.

    CAS  Google Scholar 

  7. Dmytrenko O.P., Bilyi M.M., Gubanov V.O., Kulish M.P., Rodionova T.I., Vertsimakha Ya.I., Matveeva L.A., Prylutskyy Yu.I., Scharff P., Braun T. Structural peculiarities and Raman vibrational modes in the C60 films. Mol. Cryst., Liq. Cryst. 2002; 385: 163–169.

    Google Scholar 

  8. Dmytrenko O.P., Belyi N.M., Dmytruk I.N., Kulish M.P., Prylutskyy Yu.I., Shpilevsky E.M., Hietschold M., Shulze S., Scharff P. Structure and photoluminescence of single-emulsion C60 and Cu-C60 films. Full., Nanotubes & Carbon Nanostruct. 2004; 12: 317–323.

    Google Scholar 

  9. Dmytrenko O.P., Kulish M.P., Shpilevskiy E.M., Poperenko L.V., Yurgelevych I.V., Shulze S., Hietschold M., Prylutskyy Yu.I., Matveeva L.A. The connection between optical properties and electron structure of Cu-C60 single-layer films. Funct. Mat. 2003; 10: 521–524.

    CAS  Google Scholar 

  10. Dmytrenko O.P., Kulish N.P., Shatniy T.D. Electron structure and optical conductivity of solid C60. Metallofiz., Nov. Technol.(in Russian) 2004; 26: 867–885.

    Google Scholar 

  11. Akimoto I., Kan’no K. Photoluminescence and near-edge optical absorption in the low-temperature phase of pristine C60 single crystals. J. Phys. Soc. Japan. 2002; 71: 630–643.

    Article  CAS  Google Scholar 

  12. Ivanov- OMskiy V.I., Lodygin A.B., Yastrebov S.G. Scanning tunneling microscopy and spectroscopy of amorphous carbon. Fiz. Tech. Polupr. (in Russian) 2000; 34: 1409–1416.

    Google Scholar 

  13. Fayizrakhmanov I.V., Bazarov V.V., Zghikharev V.A., Khayibulin I.B. Influence of bombardment by carbon ions on the nanostructure of diamond films. Fiz. Tech. Polupr. (in Russian) 2001; 35: 612–618.

    Google Scholar 

  14. Fayizrakhmanov I.A., Bazarov V.V., Stepanov A.L., Khayibulin I.B. Modification of nanostructure of diamond-like films by xenon bombardment. Fiz. Tech. Polupr. (in Russian) 2003; 37: 748–752.

    Google Scholar 

  15. Ivanov- OMskiy V.I., Zvonareva T.K., Frolova G.S. Vibrational modes of carbon in the hydrosein amorphous carbon, modified by the cuprum. Fiz. Tech. Polupr. (in Russian) 2000; 34: 1450–1456.

    Google Scholar 

  16. Ivanov-Omskiy V.I., Kolobov T.V., Lodygin A.B., Yastrebov S.G. Distribution on the sizes of cobalt nanoclusters in the amorphous carbon matrix. Fiz. Tech. Polupr. (in Russian) 2004; 38: 1463–1465.

    Google Scholar 

  17. Varganov S.A., Avramov P.V., Ovchinnikov S.G. Nonempirical calculations of endo- and exoedral C60 fullerene complexes with Li+ ion and endoedral C60 complex with Li2 dimer. Fiz.Tv.Tela (in Russian) 2000; 42: 378–382.

    Google Scholar 

  18. Kuzubov A.A., Avramov P.V., Ovchinnikov S.G, Varganov S.A., Tomilin F.N. Electron and atomic structure of isomers of endo- and exoedral fullerene complexes with two lithium atoms. Fiz.Tv.Tela (in Russian) 2001; 43: 1721–1726.

    Google Scholar 

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DMYTRENKO, O. et al. (2007). INTERBAND ELECTRON TRANSITIONS IN THE ALLOYED C60 FILMS WITH THE IONIC DEFECT FORMATION. In: Veziroglu, T.N., et al. Hydrogen Materials Science and Chemistry of Carbon Nanomaterials. NATO Security through Science Series A: Chemistry and Biology. Springer, Dordrecht. https://doi.org/10.1007/978-1-4020-5514-0_12

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