Tuning the hysteresis of a metal-insulator transition via lattice compatibility

The effect of the lattice degrees of freedom on the metal-insulator transition of VO2 remains a topic of debate. Here the authors show that the lattice compatibility of the high temperature tetragonal phase and the low-temperature monoclinic phase strongly influences the electronic transition, as ma...

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Autores principales: Y. G. Liang, S. Lee, H. S. Yu, H. R. Zhang, Y. J. Liang, P. Y. Zavalij, X. Chen, R. D. James, L. A. Bendersky, A. V. Davydov, X. H. Zhang, I. Takeuchi
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/ac7fc2c9bfd74b2ab5eedd10fb42333c
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spelling oai:doaj.org-article:ac7fc2c9bfd74b2ab5eedd10fb42333c2021-12-02T18:36:59ZTuning the hysteresis of a metal-insulator transition via lattice compatibility10.1038/s41467-020-17351-w2041-1723https://doaj.org/article/ac7fc2c9bfd74b2ab5eedd10fb42333c2020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17351-whttps://doaj.org/toc/2041-1723The effect of the lattice degrees of freedom on the metal-insulator transition of VO2 remains a topic of debate. Here the authors show that the lattice compatibility of the high temperature tetragonal phase and the low-temperature monoclinic phase strongly influences the electronic transition, as manifested in the tunability of its hysteresis via chemical substitution.Y. G. LiangS. LeeH. S. YuH. R. ZhangY. J. LiangP. Y. ZavalijX. ChenR. D. JamesL. A. BenderskyA. V. DavydovX. H. ZhangI. TakeuchiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-8 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Y. G. Liang
S. Lee
H. S. Yu
H. R. Zhang
Y. J. Liang
P. Y. Zavalij
X. Chen
R. D. James
L. A. Bendersky
A. V. Davydov
X. H. Zhang
I. Takeuchi
Tuning the hysteresis of a metal-insulator transition via lattice compatibility
description The effect of the lattice degrees of freedom on the metal-insulator transition of VO2 remains a topic of debate. Here the authors show that the lattice compatibility of the high temperature tetragonal phase and the low-temperature monoclinic phase strongly influences the electronic transition, as manifested in the tunability of its hysteresis via chemical substitution.
format article
author Y. G. Liang
S. Lee
H. S. Yu
H. R. Zhang
Y. J. Liang
P. Y. Zavalij
X. Chen
R. D. James
L. A. Bendersky
A. V. Davydov
X. H. Zhang
I. Takeuchi
author_facet Y. G. Liang
S. Lee
H. S. Yu
H. R. Zhang
Y. J. Liang
P. Y. Zavalij
X. Chen
R. D. James
L. A. Bendersky
A. V. Davydov
X. H. Zhang
I. Takeuchi
author_sort Y. G. Liang
title Tuning the hysteresis of a metal-insulator transition via lattice compatibility
title_short Tuning the hysteresis of a metal-insulator transition via lattice compatibility
title_full Tuning the hysteresis of a metal-insulator transition via lattice compatibility
title_fullStr Tuning the hysteresis of a metal-insulator transition via lattice compatibility
title_full_unstemmed Tuning the hysteresis of a metal-insulator transition via lattice compatibility
title_sort tuning the hysteresis of a metal-insulator transition via lattice compatibility
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/ac7fc2c9bfd74b2ab5eedd10fb42333c
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