Nanometre-thick single-crystalline nanosheets grown at the water–air interface

The recently discovered phenomena arising from 2D nanomaterials have led to an increased interest in the fabrication of other ultrathin materials from those typically only observed in the bulk. Here, the authors demonstrate the synthesis of micron-sized, single-crystalline ZnO nanosheets via solutio...

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Autores principales: Fei Wang, Jung-Hun Seo, Guangfu Luo, Matthew B. Starr, Zhaodong Li, Dalong Geng, Xin Yin, Shaoyang Wang, Douglas G. Fraser, Dane Morgan, Zhenqiang Ma, Xudong Wang
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/794ce06e3e724945adc6bacb2727441e
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spelling oai:doaj.org-article:794ce06e3e724945adc6bacb2727441e2021-12-02T15:34:52ZNanometre-thick single-crystalline nanosheets grown at the water–air interface10.1038/ncomms104442041-1723https://doaj.org/article/794ce06e3e724945adc6bacb2727441e2016-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms10444https://doaj.org/toc/2041-1723The recently discovered phenomena arising from 2D nanomaterials have led to an increased interest in the fabrication of other ultrathin materials from those typically only observed in the bulk. Here, the authors demonstrate the synthesis of micron-sized, single-crystalline ZnO nanosheets via solution based methods.Fei WangJung-Hun SeoGuangfu LuoMatthew B. StarrZhaodong LiDalong GengXin YinShaoyang WangDouglas G. FraserDane MorganZhenqiang MaXudong WangNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-7 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Fei Wang
Jung-Hun Seo
Guangfu Luo
Matthew B. Starr
Zhaodong Li
Dalong Geng
Xin Yin
Shaoyang Wang
Douglas G. Fraser
Dane Morgan
Zhenqiang Ma
Xudong Wang
Nanometre-thick single-crystalline nanosheets grown at the water–air interface
description The recently discovered phenomena arising from 2D nanomaterials have led to an increased interest in the fabrication of other ultrathin materials from those typically only observed in the bulk. Here, the authors demonstrate the synthesis of micron-sized, single-crystalline ZnO nanosheets via solution based methods.
format article
author Fei Wang
Jung-Hun Seo
Guangfu Luo
Matthew B. Starr
Zhaodong Li
Dalong Geng
Xin Yin
Shaoyang Wang
Douglas G. Fraser
Dane Morgan
Zhenqiang Ma
Xudong Wang
author_facet Fei Wang
Jung-Hun Seo
Guangfu Luo
Matthew B. Starr
Zhaodong Li
Dalong Geng
Xin Yin
Shaoyang Wang
Douglas G. Fraser
Dane Morgan
Zhenqiang Ma
Xudong Wang
author_sort Fei Wang
title Nanometre-thick single-crystalline nanosheets grown at the water–air interface
title_short Nanometre-thick single-crystalline nanosheets grown at the water–air interface
title_full Nanometre-thick single-crystalline nanosheets grown at the water–air interface
title_fullStr Nanometre-thick single-crystalline nanosheets grown at the water–air interface
title_full_unstemmed Nanometre-thick single-crystalline nanosheets grown at the water–air interface
title_sort nanometre-thick single-crystalline nanosheets grown at the water–air interface
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/794ce06e3e724945adc6bacb2727441e
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AT matthewbstarr nanometrethicksinglecrystallinenanosheetsgrownatthewaterairinterface
AT zhaodongli nanometrethicksinglecrystallinenanosheetsgrownatthewaterairinterface
AT dalonggeng nanometrethicksinglecrystallinenanosheetsgrownatthewaterairinterface
AT xinyin nanometrethicksinglecrystallinenanosheetsgrownatthewaterairinterface
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AT danemorgan nanometrethicksinglecrystallinenanosheetsgrownatthewaterairinterface
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AT xudongwang nanometrethicksinglecrystallinenanosheetsgrownatthewaterairinterface
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