Role of ferroelectric polarization during growth of highly strained ferroelectric materials

Ferroelectric (FE) materials are used in a wide range of applications, which often requires sizable FE polarization. Here, the authors report a growth procedure to enhance the FE polarization by exploiting the polarization of a FE substrate during growth to obtain higher strains and polarizations in...

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Auteurs principaux: Rui Liu, Jeffrey G. Ulbrandt, Hsiang-Chun Hsing, Anna Gura, Benjamin Bein, Alec Sun, Charles Pan, Giulia Bertino, Amanda Lai, Kaize Cheng, Eli Doyle, Kenneth Evans-Lutterodt, Randall L. Headrick, Matthew Dawber
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Publié: Nature Portfolio 2020
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Accès en ligne:https://doaj.org/article/05f5108829e34fd7b4497d36ff875dfa
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spelling oai:doaj.org-article:05f5108829e34fd7b4497d36ff875dfa2021-12-02T14:47:29ZRole of ferroelectric polarization during growth of highly strained ferroelectric materials10.1038/s41467-020-16356-92041-1723https://doaj.org/article/05f5108829e34fd7b4497d36ff875dfa2020-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16356-9https://doaj.org/toc/2041-1723Ferroelectric (FE) materials are used in a wide range of applications, which often requires sizable FE polarization. Here, the authors report a growth procedure to enhance the FE polarization by exploiting the polarization of a FE substrate during growth to obtain higher strains and polarizations in the final material.Rui LiuJeffrey G. UlbrandtHsiang-Chun HsingAnna GuraBenjamin BeinAlec SunCharles PanGiulia BertinoAmanda LaiKaize ChengEli DoyleKenneth Evans-LutterodtRandall L. HeadrickMatthew DawberNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Rui Liu
Jeffrey G. Ulbrandt
Hsiang-Chun Hsing
Anna Gura
Benjamin Bein
Alec Sun
Charles Pan
Giulia Bertino
Amanda Lai
Kaize Cheng
Eli Doyle
Kenneth Evans-Lutterodt
Randall L. Headrick
Matthew Dawber
Role of ferroelectric polarization during growth of highly strained ferroelectric materials
description Ferroelectric (FE) materials are used in a wide range of applications, which often requires sizable FE polarization. Here, the authors report a growth procedure to enhance the FE polarization by exploiting the polarization of a FE substrate during growth to obtain higher strains and polarizations in the final material.
format article
author Rui Liu
Jeffrey G. Ulbrandt
Hsiang-Chun Hsing
Anna Gura
Benjamin Bein
Alec Sun
Charles Pan
Giulia Bertino
Amanda Lai
Kaize Cheng
Eli Doyle
Kenneth Evans-Lutterodt
Randall L. Headrick
Matthew Dawber
author_facet Rui Liu
Jeffrey G. Ulbrandt
Hsiang-Chun Hsing
Anna Gura
Benjamin Bein
Alec Sun
Charles Pan
Giulia Bertino
Amanda Lai
Kaize Cheng
Eli Doyle
Kenneth Evans-Lutterodt
Randall L. Headrick
Matthew Dawber
author_sort Rui Liu
title Role of ferroelectric polarization during growth of highly strained ferroelectric materials
title_short Role of ferroelectric polarization during growth of highly strained ferroelectric materials
title_full Role of ferroelectric polarization during growth of highly strained ferroelectric materials
title_fullStr Role of ferroelectric polarization during growth of highly strained ferroelectric materials
title_full_unstemmed Role of ferroelectric polarization during growth of highly strained ferroelectric materials
title_sort role of ferroelectric polarization during growth of highly strained ferroelectric materials
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/05f5108829e34fd7b4497d36ff875dfa
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AT annagura roleofferroelectricpolarizationduringgrowthofhighlystrainedferroelectricmaterials
AT benjaminbein roleofferroelectricpolarizationduringgrowthofhighlystrainedferroelectricmaterials
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AT kennethevanslutterodt roleofferroelectricpolarizationduringgrowthofhighlystrainedferroelectricmaterials
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AT matthewdawber roleofferroelectricpolarizationduringgrowthofhighlystrainedferroelectricmaterials
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