Raman spectroscopic study of the structural change of uranium–thorium-mixed oxides before and after oxidation
UO 2 pellets doped with 1, 5 and 10 mol% Th before and after oxidation were analyzed by using Raman spectroscopy to investigate the Th doping effect on the structural changes during oxidation of UO 2 . While the Raman spectra of all sample pellets showed a close-to-perfect fluorite structure before...
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Published in | Journal of radioanalytical and nuclear chemistry Vol. 316; no. 3; pp. 1295 - 1300 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Cham
Springer International Publishing
01.06.2018
Springer Springer Nature B.V |
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Abstract | UO
2
pellets doped with 1, 5 and 10 mol% Th before and after oxidation were analyzed by using Raman spectroscopy to investigate the Th doping effect on the structural changes during oxidation of UO
2
. While the Raman spectra of all sample pellets showed a close-to-perfect fluorite structure before oxidation, those of oxidized (U
1−
y
Th
y
)O
2+
x
(0.03 ≤
x
≤ 0.06) pellets showed distinct defect structures after oxidation at 1150 °C with CO/CO
2
= 0.001. The increasing relative ratio of first-order longitudinal optical modes of (U
1−
y
Th
y
)O
2+
x
with increasing doping levels should represent the defect structure due to the Th doping effect. |
---|---|
AbstractList | UO.sub.2 pellets doped with 1, 5 and 10 mol% Th before and after oxidation were analyzed by using Raman spectroscopy to investigate the Th doping effect on the structural changes during oxidation of UO.sub.2. While the Raman spectra of all sample pellets showed a close-to-perfect fluorite structure before oxidation, those of oxidized (U.sub.1-yTh.sub.y)O.sub.2+x (0.03 [less than or equal to] x [less than or equal to] 0.06) pellets showed distinct defect structures after oxidation at 1150 °C with CO/CO.sub.2 = 0.001. The increasing relative ratio of first-order longitudinal optical modes of (U.sub.1-yTh.sub.y)O.sub.2+x with increasing doping levels should represent the defect structure due to the Th doping effect. UO2 pellets doped with 1, 5 and 10 mol% Th before and after oxidation were analyzed by using Raman spectroscopy to investigate the Th doping effect on the structural changes during oxidation of UO2. While the Raman spectra of all sample pellets showed a close-to-perfect fluorite structure before oxidation, those of oxidized (U1−yThy)O2+x (0.03 ≤ x ≤ 0.06) pellets showed distinct defect structures after oxidation at 1150 °C with CO/CO2 = 0.001. The increasing relative ratio of first-order longitudinal optical modes of (U1−yThy)O2+x with increasing doping levels should represent the defect structure due to the Th doping effect. UO 2 pellets doped with 1, 5 and 10 mol% Th before and after oxidation were analyzed by using Raman spectroscopy to investigate the Th doping effect on the structural changes during oxidation of UO 2 . While the Raman spectra of all sample pellets showed a close-to-perfect fluorite structure before oxidation, those of oxidized (U 1− y Th y )O 2+ x (0.03 ≤ x ≤ 0.06) pellets showed distinct defect structures after oxidation at 1150 °C with CO/CO 2 = 0.001. The increasing relative ratio of first-order longitudinal optical modes of (U 1− y Th y )O 2+ x with increasing doping levels should represent the defect structure due to the Th doping effect. |
Audience | Academic |
Author | Kim, Jong-Yun Lee, Jeongmook Lim, Sang Ho Youn, Young-Sang Kim, Jandee |
Author_xml | – sequence: 1 givenname: Jeongmook surname: Lee fullname: Lee, Jeongmook organization: Nuclear Chemistry Research Division, Korea Atomic Energy Research Institute – sequence: 2 givenname: Jandee surname: Kim fullname: Kim, Jandee organization: Nuclear Chemistry Research Division, Korea Atomic Energy Research Institute – sequence: 3 givenname: Young-Sang surname: Youn fullname: Youn, Young-Sang organization: Nuclear Chemistry Research Division, Korea Atomic Energy Research Institute – sequence: 4 givenname: Jong-Yun surname: Kim fullname: Kim, Jong-Yun organization: Nuclear Chemistry Research Division, Korea Atomic Energy Research Institute, Department of Radiochemistry & Nuclear Nonproliferation, University of Science & Technology – sequence: 5 givenname: Sang Ho orcidid: 0000-0002-8583-5677 surname: Lim fullname: Lim, Sang Ho email: slim@kaeri.re.kr organization: Nuclear Chemistry Research Division, Korea Atomic Energy Research Institute, Department of Radiochemistry & Nuclear Nonproliferation, University of Science & Technology |
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Keywords | Oxidation Defect structure Uranium oxide Raman spectroscopy Actinide oxide Mixed oxide |
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pellets doped with 1, 5 and 10 mol% Th before and after oxidation were analyzed by using Raman spectroscopy to investigate the Th doping effect on the... UO.sub.2 pellets doped with 1, 5 and 10 mol% Th before and after oxidation were analyzed by using Raman spectroscopy to investigate the Th doping effect on the... UO2 pellets doped with 1, 5 and 10 mol% Th before and after oxidation were analyzed by using Raman spectroscopy to investigate the Th doping effect on the... |
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SubjectTerms | Carbon dioxide Chemistry Chemistry and Materials Science Diagnostic Radiology Doping Fluorite Hadrons Heavy Ions Inorganic Chemistry Mixed oxides Nuclear Chemistry Nuclear energy Nuclear Physics Oxidation Oxidation-reduction reactions Oxides Pellets Physical Chemistry Raman spectra Raman spectroscopy Spectrum analysis Thorium Uranium Uranium dioxide |
Title | Raman spectroscopic study of the structural change of uranium–thorium-mixed oxides before and after oxidation |
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