Spontaneous liquid crystal and ferromagnetic ordering of colloidal magnetic nanoplates

Ferromagnetism has been known as a material property of solids since the time of the ancient Greeks. Here, Shuai et al. report that magnetic nanoplates suspended in a simple solvent can spontaneously align to form a ferromagnetic liquid, capable of both producing and sensing magnetic fields.

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Autores principales: M. Shuai, A. Klittnick, Y. Shen, G. P. Smith, M. R. Tuchband, C. Zhu, R. G. Petschek, A. Mertelj, D. Lisjak, M. Čopič, J. E. Maclennan, M. A. Glaser, N. A. Clark
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/8118259381514f3b81a5a9865312a246
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spelling oai:doaj.org-article:8118259381514f3b81a5a9865312a2462021-12-02T17:31:20ZSpontaneous liquid crystal and ferromagnetic ordering of colloidal magnetic nanoplates10.1038/ncomms103942041-1723https://doaj.org/article/8118259381514f3b81a5a9865312a2462016-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms10394https://doaj.org/toc/2041-1723Ferromagnetism has been known as a material property of solids since the time of the ancient Greeks. Here, Shuai et al. report that magnetic nanoplates suspended in a simple solvent can spontaneously align to form a ferromagnetic liquid, capable of both producing and sensing magnetic fields.M. ShuaiA. KlittnickY. ShenG. P. SmithM. R. TuchbandC. ZhuR. G. PetschekA. MerteljD. LisjakM. ČopičJ. E. MaclennanM. A. GlaserN. A. ClarkNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
M. Shuai
A. Klittnick
Y. Shen
G. P. Smith
M. R. Tuchband
C. Zhu
R. G. Petschek
A. Mertelj
D. Lisjak
M. Čopič
J. E. Maclennan
M. A. Glaser
N. A. Clark
Spontaneous liquid crystal and ferromagnetic ordering of colloidal magnetic nanoplates
description Ferromagnetism has been known as a material property of solids since the time of the ancient Greeks. Here, Shuai et al. report that magnetic nanoplates suspended in a simple solvent can spontaneously align to form a ferromagnetic liquid, capable of both producing and sensing magnetic fields.
format article
author M. Shuai
A. Klittnick
Y. Shen
G. P. Smith
M. R. Tuchband
C. Zhu
R. G. Petschek
A. Mertelj
D. Lisjak
M. Čopič
J. E. Maclennan
M. A. Glaser
N. A. Clark
author_facet M. Shuai
A. Klittnick
Y. Shen
G. P. Smith
M. R. Tuchband
C. Zhu
R. G. Petschek
A. Mertelj
D. Lisjak
M. Čopič
J. E. Maclennan
M. A. Glaser
N. A. Clark
author_sort M. Shuai
title Spontaneous liquid crystal and ferromagnetic ordering of colloidal magnetic nanoplates
title_short Spontaneous liquid crystal and ferromagnetic ordering of colloidal magnetic nanoplates
title_full Spontaneous liquid crystal and ferromagnetic ordering of colloidal magnetic nanoplates
title_fullStr Spontaneous liquid crystal and ferromagnetic ordering of colloidal magnetic nanoplates
title_full_unstemmed Spontaneous liquid crystal and ferromagnetic ordering of colloidal magnetic nanoplates
title_sort spontaneous liquid crystal and ferromagnetic ordering of colloidal magnetic nanoplates
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/8118259381514f3b81a5a9865312a246
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AT aklittnick spontaneousliquidcrystalandferromagneticorderingofcolloidalmagneticnanoplates
AT yshen spontaneousliquidcrystalandferromagneticorderingofcolloidalmagneticnanoplates
AT gpsmith spontaneousliquidcrystalandferromagneticorderingofcolloidalmagneticnanoplates
AT mrtuchband spontaneousliquidcrystalandferromagneticorderingofcolloidalmagneticnanoplates
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AT jemaclennan spontaneousliquidcrystalandferromagneticorderingofcolloidalmagneticnanoplates
AT maglaser spontaneousliquidcrystalandferromagneticorderingofcolloidalmagneticnanoplates
AT naclark spontaneousliquidcrystalandferromagneticorderingofcolloidalmagneticnanoplates
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