DFT study for combined influence of C-doping and external electric field on electronic structure and optical properties of TiO2 (001) surface

The electron structure and optical properties of C-TiO2 (001) surface under external electric field were studied by DFT method. After carbon doping, a new impurity level is introduced in the bandgap region of TiO2 (001) surface, and leads to the decrease of band gap, contributing to the shift of opt...

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Main Authors: Cuihua Zhao, Dewei Huang, Jianhua Chen
Format: Article
Language:English
Published: Elsevier 2018-09-01
Series:Journal of Materiomics
Online Access:http://www.sciencedirect.com/science/article/pii/S2352847818300121
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spelling doaj-2803f0a01fd847959370c644ec774f092020-11-24T20:52:11ZengElsevierJournal of Materiomics2352-84782018-09-0143247255DFT study for combined influence of C-doping and external electric field on electronic structure and optical properties of TiO2 (001) surfaceCuihua Zhao0Dewei Huang1Jianhua Chen2School of Resources, Environment and Materials, Guangxi University, Nanning, 530004, China; Guangxi Key Laboratory of Processing for Non-ferrous Metal and Featured Materials, Guangxi University, Nanning, 530004, ChinaSchool of Resources, Environment and Materials, Guangxi University, Nanning, 530004, ChinaSchool of Resources, Environment and Materials, Guangxi University, Nanning, 530004, China; Guangxi Key Laboratory of Processing for Non-ferrous Metal and Featured Materials, Guangxi University, Nanning, 530004, China; Innovation Center for Metal Resources Utilization and Environment Protection, Guangxi University, Nanning, 530004, China; Corresponding author. School of Resources, Environment and Materials, Guangxi University, Nanning, 530004, China.The electron structure and optical properties of C-TiO2 (001) surface under external electric field were studied by DFT method. After carbon doping, a new impurity level is introduced in the bandgap region of TiO2 (001) surface, and leads to the decrease of band gap, contributing to the shift of optical absorption to the visible region. When external electric field is applied across the C-TiO2 (001) surface, the band gap is further reduced with the increase of the electric field intensity from 0.1 eV to 0.5 eV. The electric field over 0.5 eV induces the electronic polarization. The spin-up bands show a gap, while spin-down electrons correspond to a metallic state. The energy gap of spin-up band decreases with increasing the electric field from 0.7 eV to 1.0 eV. The optical absorption of C-TiO2 (001) shifts to long wavelength compared with pure TiO2 (001). The electric filed make the optical absorption red-shift further, and the shift increases with an increase of the electric field, especially in the range of 0.7 eV–1.0 eV. The results show that the combined effect of carbon doping and electric field can enhance the photocatalytic activity of TiO2 (001) surface in visible region. Keywords: TiO2 (001), C doping, External electric field, DFT, Combined effecthttp://www.sciencedirect.com/science/article/pii/S2352847818300121
collection DOAJ
language English
format Article
sources DOAJ
author Cuihua Zhao
Dewei Huang
Jianhua Chen
spellingShingle Cuihua Zhao
Dewei Huang
Jianhua Chen
DFT study for combined influence of C-doping and external electric field on electronic structure and optical properties of TiO2 (001) surface
Journal of Materiomics
author_facet Cuihua Zhao
Dewei Huang
Jianhua Chen
author_sort Cuihua Zhao
title DFT study for combined influence of C-doping and external electric field on electronic structure and optical properties of TiO2 (001) surface
title_short DFT study for combined influence of C-doping and external electric field on electronic structure and optical properties of TiO2 (001) surface
title_full DFT study for combined influence of C-doping and external electric field on electronic structure and optical properties of TiO2 (001) surface
title_fullStr DFT study for combined influence of C-doping and external electric field on electronic structure and optical properties of TiO2 (001) surface
title_full_unstemmed DFT study for combined influence of C-doping and external electric field on electronic structure and optical properties of TiO2 (001) surface
title_sort dft study for combined influence of c-doping and external electric field on electronic structure and optical properties of tio2 (001) surface
publisher Elsevier
series Journal of Materiomics
issn 2352-8478
publishDate 2018-09-01
description The electron structure and optical properties of C-TiO2 (001) surface under external electric field were studied by DFT method. After carbon doping, a new impurity level is introduced in the bandgap region of TiO2 (001) surface, and leads to the decrease of band gap, contributing to the shift of optical absorption to the visible region. When external electric field is applied across the C-TiO2 (001) surface, the band gap is further reduced with the increase of the electric field intensity from 0.1 eV to 0.5 eV. The electric field over 0.5 eV induces the electronic polarization. The spin-up bands show a gap, while spin-down electrons correspond to a metallic state. The energy gap of spin-up band decreases with increasing the electric field from 0.7 eV to 1.0 eV. The optical absorption of C-TiO2 (001) shifts to long wavelength compared with pure TiO2 (001). The electric filed make the optical absorption red-shift further, and the shift increases with an increase of the electric field, especially in the range of 0.7 eV–1.0 eV. The results show that the combined effect of carbon doping and electric field can enhance the photocatalytic activity of TiO2 (001) surface in visible region. Keywords: TiO2 (001), C doping, External electric field, DFT, Combined effect
url http://www.sciencedirect.com/science/article/pii/S2352847818300121
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AT deweihuang dftstudyforcombinedinfluenceofcdopingandexternalelectricfieldonelectronicstructureandopticalpropertiesoftio2001surface
AT jianhuachen dftstudyforcombinedinfluenceofcdopingandexternalelectricfieldonelectronicstructureandopticalpropertiesoftio2001surface
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