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Optical properties of epitaxial BiFeO(3) thin film grown on SrRuO(3)-buffered SrTiO(3) substrate

The BiFeO(3) (BFO) thin film was deposited by pulsed-laser deposition on SrRuO(3) (SRO)-buffered (111) SrTiO(3) (STO) substrate. X-ray diffraction pattern reveals a well-grown epitaxial BFO thin film. Atomic force microscopy study indicates that the BFO film is rather dense with a smooth surface. Th...

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Autores principales: Xu, Ji-Ping, Zhang, Rong-Jun, Chen, Zhi-Hui, Wang, Zi-Yi, Zhang, Fan, Yu, Xiang, Jiang, An-Quan, Zheng, Yu-Xiang, Wang, Song-You, Chen, Liang-Yao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4002908/
https://www.ncbi.nlm.nih.gov/pubmed/24791162
http://dx.doi.org/10.1186/1556-276X-9-188
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author Xu, Ji-Ping
Zhang, Rong-Jun
Chen, Zhi-Hui
Wang, Zi-Yi
Zhang, Fan
Yu, Xiang
Jiang, An-Quan
Zheng, Yu-Xiang
Wang, Song-You
Chen, Liang-Yao
author_facet Xu, Ji-Ping
Zhang, Rong-Jun
Chen, Zhi-Hui
Wang, Zi-Yi
Zhang, Fan
Yu, Xiang
Jiang, An-Quan
Zheng, Yu-Xiang
Wang, Song-You
Chen, Liang-Yao
author_sort Xu, Ji-Ping
collection PubMed
description The BiFeO(3) (BFO) thin film was deposited by pulsed-laser deposition on SrRuO(3) (SRO)-buffered (111) SrTiO(3) (STO) substrate. X-ray diffraction pattern reveals a well-grown epitaxial BFO thin film. Atomic force microscopy study indicates that the BFO film is rather dense with a smooth surface. The ellipsometric spectra of the STO substrate, the SRO buffer layer, and the BFO thin film were measured, respectively, in the photon energy range 1.55 to 5.40 eV. Following the dielectric functions of STO and SRO, the ones of BFO described by the Lorentz model are received by fitting the spectra data to a five-medium optical model consisting of a semi-infinite STO substrate/SRO layer/BFO film/surface roughness/air ambient structure. The thickness and the optical constants of the BFO film are obtained. Then a direct bandgap is calculated at 2.68 eV, which is believed to be influenced by near-bandgap transitions. Compared to BFO films on other substrates, the dependence of the bandgap for the BFO thin film on in-plane compressive strain from epitaxial structure is received. Moreover, the bandgap and the transition revealed by the Lorentz model also provide a ground for the assessment of the bandgap for BFO single crystals.
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spelling pubmed-40029082014-05-01 Optical properties of epitaxial BiFeO(3) thin film grown on SrRuO(3)-buffered SrTiO(3) substrate Xu, Ji-Ping Zhang, Rong-Jun Chen, Zhi-Hui Wang, Zi-Yi Zhang, Fan Yu, Xiang Jiang, An-Quan Zheng, Yu-Xiang Wang, Song-You Chen, Liang-Yao Nanoscale Res Lett Nano Express The BiFeO(3) (BFO) thin film was deposited by pulsed-laser deposition on SrRuO(3) (SRO)-buffered (111) SrTiO(3) (STO) substrate. X-ray diffraction pattern reveals a well-grown epitaxial BFO thin film. Atomic force microscopy study indicates that the BFO film is rather dense with a smooth surface. The ellipsometric spectra of the STO substrate, the SRO buffer layer, and the BFO thin film were measured, respectively, in the photon energy range 1.55 to 5.40 eV. Following the dielectric functions of STO and SRO, the ones of BFO described by the Lorentz model are received by fitting the spectra data to a five-medium optical model consisting of a semi-infinite STO substrate/SRO layer/BFO film/surface roughness/air ambient structure. The thickness and the optical constants of the BFO film are obtained. Then a direct bandgap is calculated at 2.68 eV, which is believed to be influenced by near-bandgap transitions. Compared to BFO films on other substrates, the dependence of the bandgap for the BFO thin film on in-plane compressive strain from epitaxial structure is received. Moreover, the bandgap and the transition revealed by the Lorentz model also provide a ground for the assessment of the bandgap for BFO single crystals. Springer 2014-04-23 /pmc/articles/PMC4002908/ /pubmed/24791162 http://dx.doi.org/10.1186/1556-276X-9-188 Text en Copyright © 2014 Xu et al.; licensee Springer. http://creativecommons.org/licenses/by/4.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited.
spellingShingle Nano Express
Xu, Ji-Ping
Zhang, Rong-Jun
Chen, Zhi-Hui
Wang, Zi-Yi
Zhang, Fan
Yu, Xiang
Jiang, An-Quan
Zheng, Yu-Xiang
Wang, Song-You
Chen, Liang-Yao
Optical properties of epitaxial BiFeO(3) thin film grown on SrRuO(3)-buffered SrTiO(3) substrate
title Optical properties of epitaxial BiFeO(3) thin film grown on SrRuO(3)-buffered SrTiO(3) substrate
title_full Optical properties of epitaxial BiFeO(3) thin film grown on SrRuO(3)-buffered SrTiO(3) substrate
title_fullStr Optical properties of epitaxial BiFeO(3) thin film grown on SrRuO(3)-buffered SrTiO(3) substrate
title_full_unstemmed Optical properties of epitaxial BiFeO(3) thin film grown on SrRuO(3)-buffered SrTiO(3) substrate
title_short Optical properties of epitaxial BiFeO(3) thin film grown on SrRuO(3)-buffered SrTiO(3) substrate
title_sort optical properties of epitaxial bifeo(3) thin film grown on srruo(3)-buffered srtio(3) substrate
topic Nano Express
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4002908/
https://www.ncbi.nlm.nih.gov/pubmed/24791162
http://dx.doi.org/10.1186/1556-276X-9-188
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