Strain-driven growth of ultra-long two-dimensional nano-channels

Controlled growth of heterostructures within 10 nm scale is crucial for potential applications of transition metal dichalcogenides. Here, the authors report strain-driven synthesis of ultra-long MoS2 nano-channels having several micrometers length and 2–30 nm width embedded within MoSe2 monolayer....

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Autores principales: Chao Zhu, Maolin Yu, Jiadong Zhou, Yongmin He, Qingsheng Zeng, Ya Deng, Shasha Guo, Mingquan Xu, Jinan Shi, Wu Zhou, Litao Sun, Lin Wang, Zhili Hu, Zhuhua Zhang, Wanlin Guo, Zheng Liu
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/f67d40841e494e0fa8e16538f47e52fa
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spelling oai:doaj.org-article:f67d40841e494e0fa8e16538f47e52fa2021-12-02T17:32:13ZStrain-driven growth of ultra-long two-dimensional nano-channels10.1038/s41467-020-14521-82041-1723https://doaj.org/article/f67d40841e494e0fa8e16538f47e52fa2020-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14521-8https://doaj.org/toc/2041-1723Controlled growth of heterostructures within 10 nm scale is crucial for potential applications of transition metal dichalcogenides. Here, the authors report strain-driven synthesis of ultra-long MoS2 nano-channels having several micrometers length and 2–30 nm width embedded within MoSe2 monolayer.Chao ZhuMaolin YuJiadong ZhouYongmin HeQingsheng ZengYa DengShasha GuoMingquan XuJinan ShiWu ZhouLitao SunLin WangZhili HuZhuhua ZhangWanlin GuoZheng LiuNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Chao Zhu
Maolin Yu
Jiadong Zhou
Yongmin He
Qingsheng Zeng
Ya Deng
Shasha Guo
Mingquan Xu
Jinan Shi
Wu Zhou
Litao Sun
Lin Wang
Zhili Hu
Zhuhua Zhang
Wanlin Guo
Zheng Liu
Strain-driven growth of ultra-long two-dimensional nano-channels
description Controlled growth of heterostructures within 10 nm scale is crucial for potential applications of transition metal dichalcogenides. Here, the authors report strain-driven synthesis of ultra-long MoS2 nano-channels having several micrometers length and 2–30 nm width embedded within MoSe2 monolayer.
format article
author Chao Zhu
Maolin Yu
Jiadong Zhou
Yongmin He
Qingsheng Zeng
Ya Deng
Shasha Guo
Mingquan Xu
Jinan Shi
Wu Zhou
Litao Sun
Lin Wang
Zhili Hu
Zhuhua Zhang
Wanlin Guo
Zheng Liu
author_facet Chao Zhu
Maolin Yu
Jiadong Zhou
Yongmin He
Qingsheng Zeng
Ya Deng
Shasha Guo
Mingquan Xu
Jinan Shi
Wu Zhou
Litao Sun
Lin Wang
Zhili Hu
Zhuhua Zhang
Wanlin Guo
Zheng Liu
author_sort Chao Zhu
title Strain-driven growth of ultra-long two-dimensional nano-channels
title_short Strain-driven growth of ultra-long two-dimensional nano-channels
title_full Strain-driven growth of ultra-long two-dimensional nano-channels
title_fullStr Strain-driven growth of ultra-long two-dimensional nano-channels
title_full_unstemmed Strain-driven growth of ultra-long two-dimensional nano-channels
title_sort strain-driven growth of ultra-long two-dimensional nano-channels
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/f67d40841e494e0fa8e16538f47e52fa
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AT zhuhuazhang straindrivengrowthofultralongtwodimensionalnanochannels
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