Phase-controllable growth of ultrathin 2D magnetic FeTe crystals
Two-dimensional magnets with intrinsic ferromagnetic/antiferromagnetic ordering are highly desirable for future spintronic devices. Here, the authors demonstrate a chemical vapor deposition approach to controllably grow ultrathin FeTe crystals with antiferromagnetic tetragonal and ferromagnetic hexa...
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Nature Portfolio
2020
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oai:doaj.org-article:5ae4ad6c5f744173be410f936a4206cc2021-12-02T16:17:53ZPhase-controllable growth of ultrathin 2D magnetic FeTe crystals10.1038/s41467-020-17253-x2041-1723https://doaj.org/article/5ae4ad6c5f744173be410f936a4206cc2020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17253-xhttps://doaj.org/toc/2041-1723Two-dimensional magnets with intrinsic ferromagnetic/antiferromagnetic ordering are highly desirable for future spintronic devices. Here, the authors demonstrate a chemical vapor deposition approach to controllably grow ultrathin FeTe crystals with antiferromagnetic tetragonal and ferromagnetic hexagonal phase, showing a thickness-dependent magnetic transition.Lixing KangChen YeXiaoxu ZhaoXieyu ZhouJunxiong HuQiao LiDan LiuChandreyee Manas DasJiefu YangDianyi HuJieqiong ChenXun CaoYong ZhangManzhang XuJun DiDan TianPin SongGovindan KuttyQingsheng ZengQundong FuYa DengJiadong ZhouAriando AriandoFeng MiaoGuo HongYizhong HuangStephen J. PennycookKen-Tye YongWei JiXiao Renshaw WangZheng LiuNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020) |
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Science Q Lixing Kang Chen Ye Xiaoxu Zhao Xieyu Zhou Junxiong Hu Qiao Li Dan Liu Chandreyee Manas Das Jiefu Yang Dianyi Hu Jieqiong Chen Xun Cao Yong Zhang Manzhang Xu Jun Di Dan Tian Pin Song Govindan Kutty Qingsheng Zeng Qundong Fu Ya Deng Jiadong Zhou Ariando Ariando Feng Miao Guo Hong Yizhong Huang Stephen J. Pennycook Ken-Tye Yong Wei Ji Xiao Renshaw Wang Zheng Liu Phase-controllable growth of ultrathin 2D magnetic FeTe crystals |
description |
Two-dimensional magnets with intrinsic ferromagnetic/antiferromagnetic ordering are highly desirable for future spintronic devices. Here, the authors demonstrate a chemical vapor deposition approach to controllably grow ultrathin FeTe crystals with antiferromagnetic tetragonal and ferromagnetic hexagonal phase, showing a thickness-dependent magnetic transition. |
format |
article |
author |
Lixing Kang Chen Ye Xiaoxu Zhao Xieyu Zhou Junxiong Hu Qiao Li Dan Liu Chandreyee Manas Das Jiefu Yang Dianyi Hu Jieqiong Chen Xun Cao Yong Zhang Manzhang Xu Jun Di Dan Tian Pin Song Govindan Kutty Qingsheng Zeng Qundong Fu Ya Deng Jiadong Zhou Ariando Ariando Feng Miao Guo Hong Yizhong Huang Stephen J. Pennycook Ken-Tye Yong Wei Ji Xiao Renshaw Wang Zheng Liu |
author_facet |
Lixing Kang Chen Ye Xiaoxu Zhao Xieyu Zhou Junxiong Hu Qiao Li Dan Liu Chandreyee Manas Das Jiefu Yang Dianyi Hu Jieqiong Chen Xun Cao Yong Zhang Manzhang Xu Jun Di Dan Tian Pin Song Govindan Kutty Qingsheng Zeng Qundong Fu Ya Deng Jiadong Zhou Ariando Ariando Feng Miao Guo Hong Yizhong Huang Stephen J. Pennycook Ken-Tye Yong Wei Ji Xiao Renshaw Wang Zheng Liu |
author_sort |
Lixing Kang |
title |
Phase-controllable growth of ultrathin 2D magnetic FeTe crystals |
title_short |
Phase-controllable growth of ultrathin 2D magnetic FeTe crystals |
title_full |
Phase-controllable growth of ultrathin 2D magnetic FeTe crystals |
title_fullStr |
Phase-controllable growth of ultrathin 2D magnetic FeTe crystals |
title_full_unstemmed |
Phase-controllable growth of ultrathin 2D magnetic FeTe crystals |
title_sort |
phase-controllable growth of ultrathin 2d magnetic fete crystals |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/5ae4ad6c5f744173be410f936a4206cc |
work_keys_str_mv |
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