Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices

We review some of our works on the absorption, excitation and emission spectra of C₆₀ embedded in rare gas matrices while stressing the role of the environement. The gas phase resonant two-photon ionization spectrum of C₆₀ is reanalysed in the light of our previous work and the energy of the lowest...

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Дата:2000
Автор: Chergui, M.
Формат: Стаття
Мова:English
Опубліковано: Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України 2000
Назва видання:Физика низких температур
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Онлайн доступ:http://dspace.nbuv.gov.ua/handle/123456789/129207
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices / M. Chergui // Физика низких температур. — 2000. — Т. 26, № 9-10. — С. 863-873. — Бібліогр.: 30 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
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spelling irk-123456789-1292072018-01-17T03:04:55Z Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices Chergui, M. Low-Temperature Physics and Chemistry in Cryomatrice We review some of our works on the absorption, excitation and emission spectra of C₆₀ embedded in rare gas matrices while stressing the role of the environement. The gas phase resonant two-photon ionization spectrum of C₆₀ is reanalysed in the light of our previous work and the energy of the lowest three excited singlet states is determined with precision. In matrices, the visible absorption bands shift red by ~30 cm⁻¹ in Ne matrices to ~330 cm⁻¹ in Xe matrices. The observed reversal of state ordering of the lowest two singlets states (T₁g and T₂g ) between Ne and Ar matrices (in emission) and in Ne matrices, between absorption and emission spectra, is attributed to different Stokes shifts of the T₁g and T₂g states and to the small energy splitting (~50 cm⁻¹) between them. Finally, a detailed picture of the intramolecular energy redistribution processes is obtained thanks to a combination of picosecond fluorescence experiments and femtosecond pump-probe transient absorption experiments. The intramolecular relaxation processes among the pure electronic levels of the lowest three singlets states are found to be strongly medium dependent. Even, on the very short time scale of the internal conversion in the singlet vibronic manifold are medium effects manifest. 2000 Article Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices / M. Chergui // Физика низких температур. — 2000. — Т. 26, № 9-10. — С. 863-873. — Бібліогр.: 30 назв. — англ. 0132-6414 PACS: 33.20.Lg, 33.50.Dq, 78.40.Ri http://dspace.nbuv.gov.ua/handle/123456789/129207 en Физика низких температур Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language English
topic Low-Temperature Physics and Chemistry in Cryomatrice
Low-Temperature Physics and Chemistry in Cryomatrice
spellingShingle Low-Temperature Physics and Chemistry in Cryomatrice
Low-Temperature Physics and Chemistry in Cryomatrice
Chergui, M.
Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices
Физика низких температур
description We review some of our works on the absorption, excitation and emission spectra of C₆₀ embedded in rare gas matrices while stressing the role of the environement. The gas phase resonant two-photon ionization spectrum of C₆₀ is reanalysed in the light of our previous work and the energy of the lowest three excited singlet states is determined with precision. In matrices, the visible absorption bands shift red by ~30 cm⁻¹ in Ne matrices to ~330 cm⁻¹ in Xe matrices. The observed reversal of state ordering of the lowest two singlets states (T₁g and T₂g ) between Ne and Ar matrices (in emission) and in Ne matrices, between absorption and emission spectra, is attributed to different Stokes shifts of the T₁g and T₂g states and to the small energy splitting (~50 cm⁻¹) between them. Finally, a detailed picture of the intramolecular energy redistribution processes is obtained thanks to a combination of picosecond fluorescence experiments and femtosecond pump-probe transient absorption experiments. The intramolecular relaxation processes among the pure electronic levels of the lowest three singlets states are found to be strongly medium dependent. Even, on the very short time scale of the internal conversion in the singlet vibronic manifold are medium effects manifest.
format Article
author Chergui, M.
author_facet Chergui, M.
author_sort Chergui, M.
title Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices
title_short Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices
title_full Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices
title_fullStr Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices
title_full_unstemmed Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices
title_sort medium effects on the spectroscopy and intramolecular energy redistribution of c₆₀ cryogenic matrices
publisher Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
publishDate 2000
topic_facet Low-Temperature Physics and Chemistry in Cryomatrice
url http://dspace.nbuv.gov.ua/handle/123456789/129207
citation_txt Medium effects on the spectroscopy and intramolecular energy redistribution of C₆₀ cryogenic matrices / M. Chergui // Физика низких температур. — 2000. — Т. 26, № 9-10. — С. 863-873. — Бібліогр.: 30 назв. — англ.
series Физика низких температур
work_keys_str_mv AT cherguim mediumeffectsonthespectroscopyandintramolecularenergyredistributionofc60cryogenicmatrices
first_indexed 2023-10-18T20:57:09Z
last_indexed 2023-10-18T20:57:09Z
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