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First-principles study of the effect of dopants (Pd, Ni) on the formation and desorption of T(2)O from a Li(2)TiO(3) (001) surface

We investigated the effect of Pd and Ni dopants on the formation and desorption of tritiated water (T(2)O) molecules from the Li(2)TiO(3) (001) surface using first-principles calculations coupled with the climbing-image nudged elastic band method. We calculated the energy barriers for T(2)O producti...

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Detalles Bibliográficos
Autores principales: Fang, Yiyu, Kong, Xianggang, Yu, You, Zhang, Xiaotong, Chen, Xiaojun, Gao, Tao, Xiao, Chengjian, Lu, Tiecheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9061870/
https://www.ncbi.nlm.nih.gov/pubmed/35518669
http://dx.doi.org/10.1039/c9ra00830f
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author Fang, Yiyu
Kong, Xianggang
Yu, You
Zhang, Xiaotong
Chen, Xiaojun
Gao, Tao
Xiao, Chengjian
Lu, Tiecheng
author_facet Fang, Yiyu
Kong, Xianggang
Yu, You
Zhang, Xiaotong
Chen, Xiaojun
Gao, Tao
Xiao, Chengjian
Lu, Tiecheng
author_sort Fang, Yiyu
collection PubMed
description We investigated the effect of Pd and Ni dopants on the formation and desorption of tritiated water (T(2)O) molecules from the Li(2)TiO(3) (001) surface using first-principles calculations coupled with the climbing-image nudged elastic band method. We calculated the energy barriers for T(2)O production and desorption on the pure Li(2)TiO(3) surface to be 0.94 and 0.64 eV, respectively. The Pd and Ni dopants enhanced T(2)O formation by reducing the formation energy of O vacancies, and T(2)O generated spontaneously on the dopant surface. Moreover, we found that dopant atoms affect the charge transfer of neighboring atoms, which leads to orbital hybridization and the generation of a chemical bond between the O and T on the doped Li(2)TiO(3) surface. In addition, desorption of T(2)O from the doped Li(2)TiO(3) surface requires a relatively low energy (<0.50 eV). This theoretical study suggests that doping the Li(2)TiO(3) surface with metal atoms is an effective strategy for producing T(2)O molecules and is beneficial to T release.
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spelling pubmed-90618702022-05-04 First-principles study of the effect of dopants (Pd, Ni) on the formation and desorption of T(2)O from a Li(2)TiO(3) (001) surface Fang, Yiyu Kong, Xianggang Yu, You Zhang, Xiaotong Chen, Xiaojun Gao, Tao Xiao, Chengjian Lu, Tiecheng RSC Adv Chemistry We investigated the effect of Pd and Ni dopants on the formation and desorption of tritiated water (T(2)O) molecules from the Li(2)TiO(3) (001) surface using first-principles calculations coupled with the climbing-image nudged elastic band method. We calculated the energy barriers for T(2)O production and desorption on the pure Li(2)TiO(3) surface to be 0.94 and 0.64 eV, respectively. The Pd and Ni dopants enhanced T(2)O formation by reducing the formation energy of O vacancies, and T(2)O generated spontaneously on the dopant surface. Moreover, we found that dopant atoms affect the charge transfer of neighboring atoms, which leads to orbital hybridization and the generation of a chemical bond between the O and T on the doped Li(2)TiO(3) surface. In addition, desorption of T(2)O from the doped Li(2)TiO(3) surface requires a relatively low energy (<0.50 eV). This theoretical study suggests that doping the Li(2)TiO(3) surface with metal atoms is an effective strategy for producing T(2)O molecules and is beneficial to T release. The Royal Society of Chemistry 2019-03-13 /pmc/articles/PMC9061870/ /pubmed/35518669 http://dx.doi.org/10.1039/c9ra00830f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Fang, Yiyu
Kong, Xianggang
Yu, You
Zhang, Xiaotong
Chen, Xiaojun
Gao, Tao
Xiao, Chengjian
Lu, Tiecheng
First-principles study of the effect of dopants (Pd, Ni) on the formation and desorption of T(2)O from a Li(2)TiO(3) (001) surface
title First-principles study of the effect of dopants (Pd, Ni) on the formation and desorption of T(2)O from a Li(2)TiO(3) (001) surface
title_full First-principles study of the effect of dopants (Pd, Ni) on the formation and desorption of T(2)O from a Li(2)TiO(3) (001) surface
title_fullStr First-principles study of the effect of dopants (Pd, Ni) on the formation and desorption of T(2)O from a Li(2)TiO(3) (001) surface
title_full_unstemmed First-principles study of the effect of dopants (Pd, Ni) on the formation and desorption of T(2)O from a Li(2)TiO(3) (001) surface
title_short First-principles study of the effect of dopants (Pd, Ni) on the formation and desorption of T(2)O from a Li(2)TiO(3) (001) surface
title_sort first-principles study of the effect of dopants (pd, ni) on the formation and desorption of t(2)o from a li(2)tio(3) (001) surface
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9061870/
https://www.ncbi.nlm.nih.gov/pubmed/35518669
http://dx.doi.org/10.1039/c9ra00830f
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