Great blue-shift of luminescence of ZnO nanoparticle array constructed from ZnO quantum dots
<p>Abstract</p> <p>ZnO nanoparticle array has been fabricated on the Si substrate by a simple thermal chemical vapor transport and condensation without any metal catalysts. This ZnO nanoparticles array is constructed from ZnO quantum dots (QDs), and half-embedded in the amorphous s...
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doaj-e2570be3061d43ebae0f7a8613bb7c3e2020-11-24T21:05:30ZengSpringerOpenNanoscale Research Letters1931-75731556-276X2011-01-0161338Great blue-shift of luminescence of ZnO nanoparticle array constructed from ZnO quantum dotsWang NengwenYang YuhuaYang Guowei<p>Abstract</p> <p>ZnO nanoparticle array has been fabricated on the Si substrate by a simple thermal chemical vapor transport and condensation without any metal catalysts. This ZnO nanoparticles array is constructed from ZnO quantum dots (QDs), and half-embedded in the amorphous silicon oxide layer on the surface of the Si substrate. The cathodoluminescence measurements showed that there is a pronounced blue-shift of luminescence comparable to those of the bulk counterpart, which is suggested to originate from ZnO QDs with small size where the quantum confinement effect can work well. The fabrication mechanism of the ZnO nanoparticle array constructed from ZnO QDs was proposed, in which the immiscible-like interaction between ZnO nuclei and Si surface play a key role in the ZnO QDs cluster formation. These investigations showed the fabricated nanostructure has potential applications in ultraviolet emitters.</p> http://www.nanoscalereslett.com/content/6/1/338 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Wang Nengwen Yang Yuhua Yang Guowei |
spellingShingle |
Wang Nengwen Yang Yuhua Yang Guowei Great blue-shift of luminescence of ZnO nanoparticle array constructed from ZnO quantum dots Nanoscale Research Letters |
author_facet |
Wang Nengwen Yang Yuhua Yang Guowei |
author_sort |
Wang Nengwen |
title |
Great blue-shift of luminescence of ZnO nanoparticle array constructed from ZnO quantum dots |
title_short |
Great blue-shift of luminescence of ZnO nanoparticle array constructed from ZnO quantum dots |
title_full |
Great blue-shift of luminescence of ZnO nanoparticle array constructed from ZnO quantum dots |
title_fullStr |
Great blue-shift of luminescence of ZnO nanoparticle array constructed from ZnO quantum dots |
title_full_unstemmed |
Great blue-shift of luminescence of ZnO nanoparticle array constructed from ZnO quantum dots |
title_sort |
great blue-shift of luminescence of zno nanoparticle array constructed from zno quantum dots |
publisher |
SpringerOpen |
series |
Nanoscale Research Letters |
issn |
1931-7573 1556-276X |
publishDate |
2011-01-01 |
description |
<p>Abstract</p> <p>ZnO nanoparticle array has been fabricated on the Si substrate by a simple thermal chemical vapor transport and condensation without any metal catalysts. This ZnO nanoparticles array is constructed from ZnO quantum dots (QDs), and half-embedded in the amorphous silicon oxide layer on the surface of the Si substrate. The cathodoluminescence measurements showed that there is a pronounced blue-shift of luminescence comparable to those of the bulk counterpart, which is suggested to originate from ZnO QDs with small size where the quantum confinement effect can work well. The fabrication mechanism of the ZnO nanoparticle array constructed from ZnO QDs was proposed, in which the immiscible-like interaction between ZnO nuclei and Si surface play a key role in the ZnO QDs cluster formation. These investigations showed the fabricated nanostructure has potential applications in ultraviolet emitters.</p> |
url |
http://www.nanoscalereslett.com/content/6/1/338 |
work_keys_str_mv |
AT wangnengwen greatblueshiftofluminescenceofznonanoparticlearrayconstructedfromznoquantumdots AT yangyuhua greatblueshiftofluminescenceofznonanoparticlearrayconstructedfromznoquantumdots AT yangguowei greatblueshiftofluminescenceofznonanoparticlearrayconstructedfromznoquantumdots |
_version_ |
1716768532953300992 |