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First-Principles Study on Mechanical and Optical Behavior of Plutonium Oxide under Typical Structural Phases and Vacancy Defects

The chemical corrosion aging of plutonium is a very important topic. It is easy to be corroded and produces oxidation products of various valence states because of its 5f electron orbit between local and non-local. On the one hand, the phase diagram of plutonium and oxygen is complex, so there is st...

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Autores principales: Cheng, Jin-Xing, Yang, Fei, Wang, Qing-Bo, He, Yuan-Yuan, Liu, Yi-Nuo, Hu, Zi-Yu, Wen, Wei-Wei, Wu, You-Peng, Zheng, Cheng-Yin, Yu, Ai, Lu, Xin, Zhang, Yue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9656257/
https://www.ncbi.nlm.nih.gov/pubmed/36363381
http://dx.doi.org/10.3390/ma15217785
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author Cheng, Jin-Xing
Yang, Fei
Wang, Qing-Bo
He, Yuan-Yuan
Liu, Yi-Nuo
Hu, Zi-Yu
Wen, Wei-Wei
Wu, You-Peng
Zheng, Cheng-Yin
Yu, Ai
Lu, Xin
Zhang, Yue
author_facet Cheng, Jin-Xing
Yang, Fei
Wang, Qing-Bo
He, Yuan-Yuan
Liu, Yi-Nuo
Hu, Zi-Yu
Wen, Wei-Wei
Wu, You-Peng
Zheng, Cheng-Yin
Yu, Ai
Lu, Xin
Zhang, Yue
author_sort Cheng, Jin-Xing
collection PubMed
description The chemical corrosion aging of plutonium is a very important topic. It is easy to be corroded and produces oxidation products of various valence states because of its 5f electron orbit between local and non-local. On the one hand, the phase diagram of plutonium and oxygen is complex, so there is still not enough research on typical structural phases. On the other hand, most of the studies on plutonium oxide focus on PuO(2) and Pu(2)O(3) with stoichiometric ratio, while the understanding of non-stoichiometric ratio, especially for Pu(2)O(3-x), is not deep enough. Based on this, using the DFT + U theoretical scheme of density functional theory, we have systematically studied the structural stability, lattice parameters, electronic structure, mechanical and optical properties of six typical high temperature phases of [Formula: see text]-Pu(2)O(3), [Formula: see text]-Pu(2)O(3,) [Formula: see text]-Pu(2)O(3,) PuO, [Formula: see text]-PuO(2,) [Formula: see text]-PuO(2). Further, the mechanical properties and optical behavior of Pu(2)O(3-x) under different oxygen vacancy concentrations are analyzed and discussed in detail. The result shows that the elasticity modulus of single crystal in mechanical properties is directly related to the oxygen/plutonium ratio and crystal system. As the number of oxygen vacancies increases, the mechanical constants continue to increase. In terms of optical properties, PuO has the best optical properties, and the light absorption rate decreases with the increase of oxygen vacancy concentration.
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spelling pubmed-96562572022-11-15 First-Principles Study on Mechanical and Optical Behavior of Plutonium Oxide under Typical Structural Phases and Vacancy Defects Cheng, Jin-Xing Yang, Fei Wang, Qing-Bo He, Yuan-Yuan Liu, Yi-Nuo Hu, Zi-Yu Wen, Wei-Wei Wu, You-Peng Zheng, Cheng-Yin Yu, Ai Lu, Xin Zhang, Yue Materials (Basel) Article The chemical corrosion aging of plutonium is a very important topic. It is easy to be corroded and produces oxidation products of various valence states because of its 5f electron orbit between local and non-local. On the one hand, the phase diagram of plutonium and oxygen is complex, so there is still not enough research on typical structural phases. On the other hand, most of the studies on plutonium oxide focus on PuO(2) and Pu(2)O(3) with stoichiometric ratio, while the understanding of non-stoichiometric ratio, especially for Pu(2)O(3-x), is not deep enough. Based on this, using the DFT + U theoretical scheme of density functional theory, we have systematically studied the structural stability, lattice parameters, electronic structure, mechanical and optical properties of six typical high temperature phases of [Formula: see text]-Pu(2)O(3), [Formula: see text]-Pu(2)O(3,) [Formula: see text]-Pu(2)O(3,) PuO, [Formula: see text]-PuO(2,) [Formula: see text]-PuO(2). Further, the mechanical properties and optical behavior of Pu(2)O(3-x) under different oxygen vacancy concentrations are analyzed and discussed in detail. The result shows that the elasticity modulus of single crystal in mechanical properties is directly related to the oxygen/plutonium ratio and crystal system. As the number of oxygen vacancies increases, the mechanical constants continue to increase. In terms of optical properties, PuO has the best optical properties, and the light absorption rate decreases with the increase of oxygen vacancy concentration. MDPI 2022-11-04 /pmc/articles/PMC9656257/ /pubmed/36363381 http://dx.doi.org/10.3390/ma15217785 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cheng, Jin-Xing
Yang, Fei
Wang, Qing-Bo
He, Yuan-Yuan
Liu, Yi-Nuo
Hu, Zi-Yu
Wen, Wei-Wei
Wu, You-Peng
Zheng, Cheng-Yin
Yu, Ai
Lu, Xin
Zhang, Yue
First-Principles Study on Mechanical and Optical Behavior of Plutonium Oxide under Typical Structural Phases and Vacancy Defects
title First-Principles Study on Mechanical and Optical Behavior of Plutonium Oxide under Typical Structural Phases and Vacancy Defects
title_full First-Principles Study on Mechanical and Optical Behavior of Plutonium Oxide under Typical Structural Phases and Vacancy Defects
title_fullStr First-Principles Study on Mechanical and Optical Behavior of Plutonium Oxide under Typical Structural Phases and Vacancy Defects
title_full_unstemmed First-Principles Study on Mechanical and Optical Behavior of Plutonium Oxide under Typical Structural Phases and Vacancy Defects
title_short First-Principles Study on Mechanical and Optical Behavior of Plutonium Oxide under Typical Structural Phases and Vacancy Defects
title_sort first-principles study on mechanical and optical behavior of plutonium oxide under typical structural phases and vacancy defects
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9656257/
https://www.ncbi.nlm.nih.gov/pubmed/36363381
http://dx.doi.org/10.3390/ma15217785
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