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Ultra Uniform Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) Thin Films with Tunable Optical Properties Fabricated via Pulsed Laser Deposition

Ferroelectric thin films have been utilized in a wide range of electronic and optical applications, in which their morphologies and properties can be inherently tuned by a qualitative control during growth. In this work, we demonstrate the evolution of the Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) (PL...

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Autores principales: Jiang, Shenglin, Huang, Chi, Gu, Honggang, Liu, Shiyuan, Zhu, Shuai, Li, Ming-Yu, Yao, Lingmin, Wu, Yunyi, Zhang, Guangzu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5951371/
https://www.ncbi.nlm.nih.gov/pubmed/29596398
http://dx.doi.org/10.3390/ma11040525
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author Jiang, Shenglin
Huang, Chi
Gu, Honggang
Liu, Shiyuan
Zhu, Shuai
Li, Ming-Yu
Yao, Lingmin
Wu, Yunyi
Zhang, Guangzu
author_facet Jiang, Shenglin
Huang, Chi
Gu, Honggang
Liu, Shiyuan
Zhu, Shuai
Li, Ming-Yu
Yao, Lingmin
Wu, Yunyi
Zhang, Guangzu
author_sort Jiang, Shenglin
collection PubMed
description Ferroelectric thin films have been utilized in a wide range of electronic and optical applications, in which their morphologies and properties can be inherently tuned by a qualitative control during growth. In this work, we demonstrate the evolution of the Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) (PLZT) thin films on MgO (200) with high uniformity and optimized optical property via the controls of the deposition temperatures and oxygen pressures. The perovskite phase can only be obtained at the deposition temperature above 700 °C and oxygen pressure over 50 Pa due to the improved crystallinity. Meanwhile, the surface morphologies gradually become smooth and compact owing to spontaneously increased nucleation sites with the elevated temperatures, and the crystallization of PLZT thin films also sensitively respond to the oxygen vacancies with the variation of oxygen pressures. Correspondingly, the refractive indices gradually develop with variations of the deposition temperatures and oxygen pressures resulted from the various slight loss, and the extinction coefficient for each sample is similarly near to zero due to the relatively smooth morphology. The resulting PLZT thin films exhibit the ferroelectricity, and the dielectric constant sensitively varies as a function of electric filed, which can be potentially applied in the electronic and optical applications.
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spelling pubmed-59513712018-05-15 Ultra Uniform Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) Thin Films with Tunable Optical Properties Fabricated via Pulsed Laser Deposition Jiang, Shenglin Huang, Chi Gu, Honggang Liu, Shiyuan Zhu, Shuai Li, Ming-Yu Yao, Lingmin Wu, Yunyi Zhang, Guangzu Materials (Basel) Article Ferroelectric thin films have been utilized in a wide range of electronic and optical applications, in which their morphologies and properties can be inherently tuned by a qualitative control during growth. In this work, we demonstrate the evolution of the Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) (PLZT) thin films on MgO (200) with high uniformity and optimized optical property via the controls of the deposition temperatures and oxygen pressures. The perovskite phase can only be obtained at the deposition temperature above 700 °C and oxygen pressure over 50 Pa due to the improved crystallinity. Meanwhile, the surface morphologies gradually become smooth and compact owing to spontaneously increased nucleation sites with the elevated temperatures, and the crystallization of PLZT thin films also sensitively respond to the oxygen vacancies with the variation of oxygen pressures. Correspondingly, the refractive indices gradually develop with variations of the deposition temperatures and oxygen pressures resulted from the various slight loss, and the extinction coefficient for each sample is similarly near to zero due to the relatively smooth morphology. The resulting PLZT thin films exhibit the ferroelectricity, and the dielectric constant sensitively varies as a function of electric filed, which can be potentially applied in the electronic and optical applications. MDPI 2018-03-29 /pmc/articles/PMC5951371/ /pubmed/29596398 http://dx.doi.org/10.3390/ma11040525 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jiang, Shenglin
Huang, Chi
Gu, Honggang
Liu, Shiyuan
Zhu, Shuai
Li, Ming-Yu
Yao, Lingmin
Wu, Yunyi
Zhang, Guangzu
Ultra Uniform Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) Thin Films with Tunable Optical Properties Fabricated via Pulsed Laser Deposition
title Ultra Uniform Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) Thin Films with Tunable Optical Properties Fabricated via Pulsed Laser Deposition
title_full Ultra Uniform Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) Thin Films with Tunable Optical Properties Fabricated via Pulsed Laser Deposition
title_fullStr Ultra Uniform Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) Thin Films with Tunable Optical Properties Fabricated via Pulsed Laser Deposition
title_full_unstemmed Ultra Uniform Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) Thin Films with Tunable Optical Properties Fabricated via Pulsed Laser Deposition
title_short Ultra Uniform Pb(0.865)La(0.09)(Zr(0.65)Ti(0.35))O(3) Thin Films with Tunable Optical Properties Fabricated via Pulsed Laser Deposition
title_sort ultra uniform pb(0.865)la(0.09)(zr(0.65)ti(0.35))o(3) thin films with tunable optical properties fabricated via pulsed laser deposition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5951371/
https://www.ncbi.nlm.nih.gov/pubmed/29596398
http://dx.doi.org/10.3390/ma11040525
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