Striped nanoscale phase separation at the metal–insulator transition of heteroepitaxial nickelates

Probing the evolution of mixed-phase states in materials offers unique insights into the microscopic mechanism of phase transitions. Here, Mattoni et al. report imaging of nanoscale formation and growth of insulating domains across the metal-insulator transition in NdNiO3thin films, uncovering a ric...

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Autores principales: G. Mattoni, P. Zubko, F. Maccherozzi, A.J.H. van der Torren, D. B. Boltje, M. Hadjimichael, N. Manca, S. Catalano, M. Gibert, Y. Liu, J. Aarts, J.-M. Triscone, S. S. Dhesi, A. D. Caviglia
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/5b758981d1a44af3b46e36824b6b0d21
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spelling oai:doaj.org-article:5b758981d1a44af3b46e36824b6b0d212021-12-02T15:33:50ZStriped nanoscale phase separation at the metal–insulator transition of heteroepitaxial nickelates10.1038/ncomms131412041-1723https://doaj.org/article/5b758981d1a44af3b46e36824b6b0d212016-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms13141https://doaj.org/toc/2041-1723Probing the evolution of mixed-phase states in materials offers unique insights into the microscopic mechanism of phase transitions. Here, Mattoni et al. report imaging of nanoscale formation and growth of insulating domains across the metal-insulator transition in NdNiO3thin films, uncovering a rich interplay between structural and electronic degrees of freedom.G. MattoniP. ZubkoF. MaccherozziA.J.H. van der TorrenD. B. BoltjeM. HadjimichaelN. MancaS. CatalanoM. GibertY. LiuJ. AartsJ.-M. TrisconeS. S. DhesiA. D. CavigliaNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-7 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
G. Mattoni
P. Zubko
F. Maccherozzi
A.J.H. van der Torren
D. B. Boltje
M. Hadjimichael
N. Manca
S. Catalano
M. Gibert
Y. Liu
J. Aarts
J.-M. Triscone
S. S. Dhesi
A. D. Caviglia
Striped nanoscale phase separation at the metal–insulator transition of heteroepitaxial nickelates
description Probing the evolution of mixed-phase states in materials offers unique insights into the microscopic mechanism of phase transitions. Here, Mattoni et al. report imaging of nanoscale formation and growth of insulating domains across the metal-insulator transition in NdNiO3thin films, uncovering a rich interplay between structural and electronic degrees of freedom.
format article
author G. Mattoni
P. Zubko
F. Maccherozzi
A.J.H. van der Torren
D. B. Boltje
M. Hadjimichael
N. Manca
S. Catalano
M. Gibert
Y. Liu
J. Aarts
J.-M. Triscone
S. S. Dhesi
A. D. Caviglia
author_facet G. Mattoni
P. Zubko
F. Maccherozzi
A.J.H. van der Torren
D. B. Boltje
M. Hadjimichael
N. Manca
S. Catalano
M. Gibert
Y. Liu
J. Aarts
J.-M. Triscone
S. S. Dhesi
A. D. Caviglia
author_sort G. Mattoni
title Striped nanoscale phase separation at the metal–insulator transition of heteroepitaxial nickelates
title_short Striped nanoscale phase separation at the metal–insulator transition of heteroepitaxial nickelates
title_full Striped nanoscale phase separation at the metal–insulator transition of heteroepitaxial nickelates
title_fullStr Striped nanoscale phase separation at the metal–insulator transition of heteroepitaxial nickelates
title_full_unstemmed Striped nanoscale phase separation at the metal–insulator transition of heteroepitaxial nickelates
title_sort striped nanoscale phase separation at the metal–insulator transition of heteroepitaxial nickelates
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/5b758981d1a44af3b46e36824b6b0d21
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