Anisotropic Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanostructures prepared by magnetron sputter deposition

<p>Abstract</p> <p>Regular arrays of Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanoflakes were fabricated through glancing angle sputter deposition onto self-assembled close-packe...

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Main Authors: Chen Shutian, Li Zhengcao, Zhang Zhengjun
Format: Article
Language:English
Published: SpringerOpen 2011-01-01
Series:Nanoscale Research Letters
Online Access:http://www.nanoscalereslett.com/content/6/1/326
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author Chen Shutian
Li Zhengcao
Zhang Zhengjun
author_facet Chen Shutian
Li Zhengcao
Zhang Zhengjun
author_sort Chen Shutian
collection DOAJ
description <p>Abstract</p> <p>Regular arrays of Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanoflakes were fabricated through glancing angle sputter deposition onto self-assembled close-packed arrays of 200-nm-diameter polystyrene spheres. The morphology of nanostructures could be controlled by simply adjusting the sputtering power of the Ti target. The reflectance measurements showed that the melon seed-shaped nanoflakes exhibited optimal properties of antireflection in the entire visible and ultraviolet region. In addition, we determined their anisotropic reflectance in the direction parallel to the surface of nanoflakes and perpendicular to it, arising from the anisotropic morphology.</p>
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spelling doaj.art-3b1e7013ae984d869d4b58183fbd22062023-09-02T14:49:41ZengSpringerOpenNanoscale Research Letters1931-75731556-276X2011-01-0161326Anisotropic Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanostructures prepared by magnetron sputter depositionChen ShutianLi ZhengcaoZhang Zhengjun<p>Abstract</p> <p>Regular arrays of Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanoflakes were fabricated through glancing angle sputter deposition onto self-assembled close-packed arrays of 200-nm-diameter polystyrene spheres. The morphology of nanostructures could be controlled by simply adjusting the sputtering power of the Ti target. The reflectance measurements showed that the melon seed-shaped nanoflakes exhibited optimal properties of antireflection in the entire visible and ultraviolet region. In addition, we determined their anisotropic reflectance in the direction parallel to the surface of nanoflakes and perpendicular to it, arising from the anisotropic morphology.</p>http://www.nanoscalereslett.com/content/6/1/326
spellingShingle Chen Shutian
Li Zhengcao
Zhang Zhengjun
Anisotropic Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanostructures prepared by magnetron sputter deposition
Nanoscale Research Letters
title Anisotropic Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanostructures prepared by magnetron sputter deposition
title_full Anisotropic Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanostructures prepared by magnetron sputter deposition
title_fullStr Anisotropic Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanostructures prepared by magnetron sputter deposition
title_full_unstemmed Anisotropic Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanostructures prepared by magnetron sputter deposition
title_short Anisotropic Ti<sub><it>x</it></sub>Sn<sub>1-</sub><sub><it>x</it></sub>O<sub>2 </sub>nanostructures prepared by magnetron sputter deposition
title_sort anisotropic ti sub it x it sub sn sub 1 sub sub it x it sub o sub 2 sub nanostructures prepared by magnetron sputter deposition
url http://www.nanoscalereslett.com/content/6/1/326
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