Ultrathin high-κ antimony oxide single crystals

The ultrathin oxide nanosheets obtained through previous approaches usually exhibit amorphism or polycrystallinity, which limit their properties towards electronic devices. Here, the authors synthesize ultrathin antimony oxide single crystals with high dielectric constant (~100) and large breakdown...

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Autores principales: Kena Yang, Tao Zhang, Bin Wei, Yijia Bai, Shuangfeng Jia, Guanghui Cao, Renhui Jiang, Chunbo Zhang, Enlai Gao, Xuejiao Chang, Juntao Li, Simo Li, Daming Zhu, Renzhong Tai, Hua Zhou, Jianbo Wang, Mengqi Zeng, Zhongchang Wang, Lei Fu
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/a03e1175ce6a450281194172dd51e471
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spelling oai:doaj.org-article:a03e1175ce6a450281194172dd51e4712021-12-02T15:45:24ZUltrathin high-κ antimony oxide single crystals10.1038/s41467-020-16364-92041-1723https://doaj.org/article/a03e1175ce6a450281194172dd51e4712020-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16364-9https://doaj.org/toc/2041-1723The ultrathin oxide nanosheets obtained through previous approaches usually exhibit amorphism or polycrystallinity, which limit their properties towards electronic devices. Here, the authors synthesize ultrathin antimony oxide single crystals with high dielectric constant (~100) and large breakdown voltage (~5.7 GV m−1).Kena YangTao ZhangBin WeiYijia BaiShuangfeng JiaGuanghui CaoRenhui JiangChunbo ZhangEnlai GaoXuejiao ChangJuntao LiSimo LiDaming ZhuRenzhong TaiHua ZhouJianbo WangMengqi ZengZhongchang WangLei FuNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-6 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kena Yang
Tao Zhang
Bin Wei
Yijia Bai
Shuangfeng Jia
Guanghui Cao
Renhui Jiang
Chunbo Zhang
Enlai Gao
Xuejiao Chang
Juntao Li
Simo Li
Daming Zhu
Renzhong Tai
Hua Zhou
Jianbo Wang
Mengqi Zeng
Zhongchang Wang
Lei Fu
Ultrathin high-κ antimony oxide single crystals
description The ultrathin oxide nanosheets obtained through previous approaches usually exhibit amorphism or polycrystallinity, which limit their properties towards electronic devices. Here, the authors synthesize ultrathin antimony oxide single crystals with high dielectric constant (~100) and large breakdown voltage (~5.7 GV m−1).
format article
author Kena Yang
Tao Zhang
Bin Wei
Yijia Bai
Shuangfeng Jia
Guanghui Cao
Renhui Jiang
Chunbo Zhang
Enlai Gao
Xuejiao Chang
Juntao Li
Simo Li
Daming Zhu
Renzhong Tai
Hua Zhou
Jianbo Wang
Mengqi Zeng
Zhongchang Wang
Lei Fu
author_facet Kena Yang
Tao Zhang
Bin Wei
Yijia Bai
Shuangfeng Jia
Guanghui Cao
Renhui Jiang
Chunbo Zhang
Enlai Gao
Xuejiao Chang
Juntao Li
Simo Li
Daming Zhu
Renzhong Tai
Hua Zhou
Jianbo Wang
Mengqi Zeng
Zhongchang Wang
Lei Fu
author_sort Kena Yang
title Ultrathin high-κ antimony oxide single crystals
title_short Ultrathin high-κ antimony oxide single crystals
title_full Ultrathin high-κ antimony oxide single crystals
title_fullStr Ultrathin high-κ antimony oxide single crystals
title_full_unstemmed Ultrathin high-κ antimony oxide single crystals
title_sort ultrathin high-κ antimony oxide single crystals
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/a03e1175ce6a450281194172dd51e471
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