Mechanical-force-induced non-local collective ferroelastic switching in epitaxial lead-titanate thin films

Clamping effects in ferroelestastic thin films limits their usefulness for applications such as sensitive mechanical sensors. Here, the authors report on non-local mechanical force induced switching in PbTiO3 thin films by tuning the material to a state of nearly energetically degenerate co-existing...

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Autores principales: Xiaoyan Lu, Zuhuang Chen, Ye Cao, Yunlong Tang, Ruijuan Xu, Sahar Saremi, Zhan Zhang, Lu You, Yongqi Dong, Sujit Das, Hangbo Zhang, Limei Zheng, Huaping Wu, Weiming Lv, Guoqiang Xie, Xingjun Liu, Jiangyu Li, Lang Chen, Long-Qing Chen, Wenwu Cao, Lane W. Martin
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/5bf327d4698c444598e711e1b243fb2a
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spelling oai:doaj.org-article:5bf327d4698c444598e711e1b243fb2a2021-12-02T16:57:23ZMechanical-force-induced non-local collective ferroelastic switching in epitaxial lead-titanate thin films10.1038/s41467-019-11825-22041-1723https://doaj.org/article/5bf327d4698c444598e711e1b243fb2a2019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11825-2https://doaj.org/toc/2041-1723Clamping effects in ferroelestastic thin films limits their usefulness for applications such as sensitive mechanical sensors. Here, the authors report on non-local mechanical force induced switching in PbTiO3 thin films by tuning the material to a state of nearly energetically degenerate co-existing domains.Xiaoyan LuZuhuang ChenYe CaoYunlong TangRuijuan XuSahar SaremiZhan ZhangLu YouYongqi DongSujit DasHangbo ZhangLimei ZhengHuaping WuWeiming LvGuoqiang XieXingjun LiuJiangyu LiLang ChenLong-Qing ChenWenwu CaoLane W. MartinNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-8 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiaoyan Lu
Zuhuang Chen
Ye Cao
Yunlong Tang
Ruijuan Xu
Sahar Saremi
Zhan Zhang
Lu You
Yongqi Dong
Sujit Das
Hangbo Zhang
Limei Zheng
Huaping Wu
Weiming Lv
Guoqiang Xie
Xingjun Liu
Jiangyu Li
Lang Chen
Long-Qing Chen
Wenwu Cao
Lane W. Martin
Mechanical-force-induced non-local collective ferroelastic switching in epitaxial lead-titanate thin films
description Clamping effects in ferroelestastic thin films limits their usefulness for applications such as sensitive mechanical sensors. Here, the authors report on non-local mechanical force induced switching in PbTiO3 thin films by tuning the material to a state of nearly energetically degenerate co-existing domains.
format article
author Xiaoyan Lu
Zuhuang Chen
Ye Cao
Yunlong Tang
Ruijuan Xu
Sahar Saremi
Zhan Zhang
Lu You
Yongqi Dong
Sujit Das
Hangbo Zhang
Limei Zheng
Huaping Wu
Weiming Lv
Guoqiang Xie
Xingjun Liu
Jiangyu Li
Lang Chen
Long-Qing Chen
Wenwu Cao
Lane W. Martin
author_facet Xiaoyan Lu
Zuhuang Chen
Ye Cao
Yunlong Tang
Ruijuan Xu
Sahar Saremi
Zhan Zhang
Lu You
Yongqi Dong
Sujit Das
Hangbo Zhang
Limei Zheng
Huaping Wu
Weiming Lv
Guoqiang Xie
Xingjun Liu
Jiangyu Li
Lang Chen
Long-Qing Chen
Wenwu Cao
Lane W. Martin
author_sort Xiaoyan Lu
title Mechanical-force-induced non-local collective ferroelastic switching in epitaxial lead-titanate thin films
title_short Mechanical-force-induced non-local collective ferroelastic switching in epitaxial lead-titanate thin films
title_full Mechanical-force-induced non-local collective ferroelastic switching in epitaxial lead-titanate thin films
title_fullStr Mechanical-force-induced non-local collective ferroelastic switching in epitaxial lead-titanate thin films
title_full_unstemmed Mechanical-force-induced non-local collective ferroelastic switching in epitaxial lead-titanate thin films
title_sort mechanical-force-induced non-local collective ferroelastic switching in epitaxial lead-titanate thin films
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/5bf327d4698c444598e711e1b243fb2a
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