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volume 30 issue 2 pages 99-112

Electronic structure and chemical bond nature in Cs2PuO2Cl4

Publication typeJournal Article
Publication date2015-07-27
scimago Q3
wos Q4
SJR0.287
CiteScore1.9
Impact factor0.7
ISSN14513994, 14528185
Nuclear Energy and Engineering
Safety, Risk, Reliability and Quality
Abstract

X-ray photoelectron spectral analysis of dicaesiumtetrachlorodioxoplutonate (Cs2PuO2Cl4) single crystal was done in the binding energy range 0-~35 eV on the basis of binding energies and structure of the core electronic shells (~35 eV-1250 eV), as well as the relativistic discrete variation calculation results for the PuO2Cl4 (D4h). This cluster reflects Pu close environment in Cs2PuO2Cl4 containing the plutonyl group PuO2. The many-body effects due to the presence of cesium and chlorine were shown to contribute to the outer valence (0-~15 eV binding energy) spectral structure much less than to the inner valence (~15 eV- ~35 eV binding energy) one. The filled Pu 5f electronic states were theoretically calculated and experimentally con- firmed to present in the valence band of Cs2PuO2Cl4. It corroborates the suggestion on the direct participation of the Pu 5f electrons in the chemical bond. The Pu 6p atomic orbitals were shown to participate in formation of both the inner and the outer valence molecular orbitals (bands), while the filled Pu 6p and O 2s, Cl 3s electronic shells were found to take the largest part in formation of the inner valence molecular orbitals. The composition of molecular orbitals and the sequence order in the binding energy range 0-~35 eV in Cs2PuO2Cl4 were established. The quantitative scheme of molecular orbitals for Cs2PuO2Cl4 in the binding energy range 0-~15 eV was built on the basis of the experimental and theoretical data. It is fundamental for both understanding the chemical bond nature in Cs2PuO2Cl4 and the interpretation of other X-ray spectra of Cs2PuO2Cl4. The contributions to the chemical binding for the PuO2Cl4 cluster were evaluated to be: the contribution of the outer valence molecular orbitals -66 %, the contribution of the inner valence molecular orbitals -34 %.

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Teterin Y. et al. Electronic structure and chemical bond nature in Cs2PuO2Cl4 // Nuclear Technology and Radiation Protection. 2015. Vol. 30. No. 2. pp. 99-112.
GOST all authors (up to 50) Copy
Teterin Y., Maslakov K., Ryzhkov M., Teterin A., Ivanov K., Kalmykov S., Petrov V., Suglobov D. Electronic structure and chemical bond nature in Cs2PuO2Cl4 // Nuclear Technology and Radiation Protection. 2015. Vol. 30. No. 2. pp. 99-112.
RIS |
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RIS Copy
TY - JOUR
DO - 10.2298/NTRP1502099T
UR - https://doi.org/10.2298/NTRP1502099T
TI - Electronic structure and chemical bond nature in Cs2PuO2Cl4
T2 - Nuclear Technology and Radiation Protection
AU - Teterin, Yury
AU - Maslakov, Konstantin
AU - Ryzhkov, Mikhail
AU - Teterin, Anton
AU - Ivanov, Kirill
AU - Kalmykov, Stepan
AU - Petrov, Vladimir
AU - Suglobov, Dmitry
PY - 2015
DA - 2015/07/27
PB - National Library of Serbia
SP - 99-112
IS - 2
VL - 30
SN - 1451-3994
SN - 1452-8185
ER -
BibTex |
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BibTex (up to 50 authors) Copy
@article{2015_Teterin,
author = {Yury Teterin and Konstantin Maslakov and Mikhail Ryzhkov and Anton Teterin and Kirill Ivanov and Stepan Kalmykov and Vladimir Petrov and Dmitry Suglobov},
title = {Electronic structure and chemical bond nature in Cs2PuO2Cl4},
journal = {Nuclear Technology and Radiation Protection},
year = {2015},
volume = {30},
publisher = {National Library of Serbia},
month = {jul},
url = {https://doi.org/10.2298/NTRP1502099T},
number = {2},
pages = {99--112},
doi = {10.2298/NTRP1502099T}
}
MLA
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MLA Copy
Teterin, Yury, et al. “Electronic structure and chemical bond nature in Cs2PuO2Cl4.” Nuclear Technology and Radiation Protection, vol. 30, no. 2, Jul. 2015, pp. 99-112. https://doi.org/10.2298/NTRP1502099T.