Study of the Radiation Resistance of Endohedral Fullerenes of Rare-Earth Elements and Their Water-Soluble Derivatives


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Resumo

Endohedral metallofullerenes Me@C2n (n = 30–50), their hydroxylated derivatives Me@C2n(OH)38–40 (Me = Tm, Ho, Eu, Sm, Co), and fullerenol С60(OH)38 have been synthesized The radiation resistance of these structures under irradiation in reactor by thermal and fast neutron fluxes in the fluence range of 1018–1019 cm–2 (cadmium ratio of ~10) has been analyzed. Endofullerenols are shown to be more stable in comparison with initial endohedral fullerenes; the molecules containing Eu and Sm (atoms characterized by the largest slow-neutron absorption cross section) turned out to be most stable. The mechanism of the formation of secondary Eu and Sm endofullerenols is discussed taking into account the neutron capture and emission of γ quanta by excited nuclei, which acquire the recoil energy.

Sobre autores

I. Dubovskii

National Research Centre “Kurchatov Institute,” Petersburg Nuclear Physics Institute

Autor responsável pela correspondência
Email: dubovsky_im@pnpi.nrcki.ru
Rússia, Gatchina, Leningrad oblast, 188300

V. Lebedev

National Research Centre “Kurchatov Institute,” Petersburg Nuclear Physics Institute

Email: dubovsky_im@pnpi.nrcki.ru
Rússia, Gatchina, Leningrad oblast, 188300

V. Shilin

National Research Centre “Kurchatov Institute,” Petersburg Nuclear Physics Institute

Email: dubovsky_im@pnpi.nrcki.ru
Rússia, Gatchina, Leningrad oblast, 188300

A. Szhogina

National Research Centre “Kurchatov Institute,” Petersburg Nuclear Physics Institute

Email: dubovsky_im@pnpi.nrcki.ru
Rússia, Gatchina, Leningrad oblast, 188300

M. Suyasova

National Research Centre “Kurchatov Institute,” Petersburg Nuclear Physics Institute

Email: dubovsky_im@pnpi.nrcki.ru
Rússia, Gatchina, Leningrad oblast, 188300

V. Sedov

National Research Centre “Kurchatov Institute,” Petersburg Nuclear Physics Institute

Email: dubovsky_im@pnpi.nrcki.ru
Rússia, Gatchina, Leningrad oblast, 188300

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