Ferroelectric columnar assemblies from the bowl-to-bowl inversion of aromatic cores

Organic ferroelectrics are of potential use in state-of-the-art ferroelectric devices but mechanistic insight in generating ferroelectricity remains limited. Here, the authors demonstrate that a bowl-to-bowl inversion of a bowl shaped organic molecule generates ferroelectric dipole relaxation, exten...

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Autores principales: Shunsuke Furukawa, Jianyun Wu, Masaya Koyama, Keisuke Hayashi, Norihisa Hoshino, Takashi Takeda, Yasutaka Suzuki, Jun Kawamata, Masaichi Saito, Tomoyuki Akutagawa
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/8e5ca4635bc04a6c83237f41d83f39e0
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spelling oai:doaj.org-article:8e5ca4635bc04a6c83237f41d83f39e02021-12-02T14:33:26ZFerroelectric columnar assemblies from the bowl-to-bowl inversion of aromatic cores10.1038/s41467-021-21019-42041-1723https://doaj.org/article/8e5ca4635bc04a6c83237f41d83f39e02021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21019-4https://doaj.org/toc/2041-1723Organic ferroelectrics are of potential use in state-of-the-art ferroelectric devices but mechanistic insight in generating ferroelectricity remains limited. Here, the authors demonstrate that a bowl-to-bowl inversion of a bowl shaped organic molecule generates ferroelectric dipole relaxation, extending the concept of ferroelectricity in small organic molecules.Shunsuke FurukawaJianyun WuMasaya KoyamaKeisuke HayashiNorihisa HoshinoTakashi TakedaYasutaka SuzukiJun KawamataMasaichi SaitoTomoyuki AkutagawaNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Shunsuke Furukawa
Jianyun Wu
Masaya Koyama
Keisuke Hayashi
Norihisa Hoshino
Takashi Takeda
Yasutaka Suzuki
Jun Kawamata
Masaichi Saito
Tomoyuki Akutagawa
Ferroelectric columnar assemblies from the bowl-to-bowl inversion of aromatic cores
description Organic ferroelectrics are of potential use in state-of-the-art ferroelectric devices but mechanistic insight in generating ferroelectricity remains limited. Here, the authors demonstrate that a bowl-to-bowl inversion of a bowl shaped organic molecule generates ferroelectric dipole relaxation, extending the concept of ferroelectricity in small organic molecules.
format article
author Shunsuke Furukawa
Jianyun Wu
Masaya Koyama
Keisuke Hayashi
Norihisa Hoshino
Takashi Takeda
Yasutaka Suzuki
Jun Kawamata
Masaichi Saito
Tomoyuki Akutagawa
author_facet Shunsuke Furukawa
Jianyun Wu
Masaya Koyama
Keisuke Hayashi
Norihisa Hoshino
Takashi Takeda
Yasutaka Suzuki
Jun Kawamata
Masaichi Saito
Tomoyuki Akutagawa
author_sort Shunsuke Furukawa
title Ferroelectric columnar assemblies from the bowl-to-bowl inversion of aromatic cores
title_short Ferroelectric columnar assemblies from the bowl-to-bowl inversion of aromatic cores
title_full Ferroelectric columnar assemblies from the bowl-to-bowl inversion of aromatic cores
title_fullStr Ferroelectric columnar assemblies from the bowl-to-bowl inversion of aromatic cores
title_full_unstemmed Ferroelectric columnar assemblies from the bowl-to-bowl inversion of aromatic cores
title_sort ferroelectric columnar assemblies from the bowl-to-bowl inversion of aromatic cores
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/8e5ca4635bc04a6c83237f41d83f39e0
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AT masayakoyama ferroelectriccolumnarassembliesfromthebowltobowlinversionofaromaticcores
AT keisukehayashi ferroelectriccolumnarassembliesfromthebowltobowlinversionofaromaticcores
AT norihisahoshino ferroelectriccolumnarassembliesfromthebowltobowlinversionofaromaticcores
AT takashitakeda ferroelectriccolumnarassembliesfromthebowltobowlinversionofaromaticcores
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AT junkawamata ferroelectriccolumnarassembliesfromthebowltobowlinversionofaromaticcores
AT masaichisaito ferroelectriccolumnarassembliesfromthebowltobowlinversionofaromaticcores
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