Abstract
In this work, we have developed a facile but efficient method to prepare mushroom-like Zinc oxide (ZnO) nanostructures with a flat cap in the diameter of around 1m, by thermal evaporation of the mixture of ZnS and carbon powder on a tungsten substrate. The mushroom-like nanostructures were characterized by using advanced techniques such as scanning electron microscope (SEM), X ray diffraction (XRD) and Raman spectroscopy. The optical properties of such product were also investigated by photoluminescence spectroscopy, revealing a strong green emission band emerged, which may be attributed to the oxygen vacancies and various surface states. Finally the formation and growth mechanisms for the mushroom-like ZnO nanostructures were proposed and discussed.
Keywords: Nanostructures, optical property, thermal evaporation, ZnO.
Current Nanoscience
Title:Mushroom-like ZnO Nanostructures Grown on Tungsten Substrate
Volume: 10 Issue: 2
Author(s): Xiang Wu, Boxiang Jia, Fengyu Qu and Quanqin Zhao
Affiliation:
Keywords: Nanostructures, optical property, thermal evaporation, ZnO.
Abstract: In this work, we have developed a facile but efficient method to prepare mushroom-like Zinc oxide (ZnO) nanostructures with a flat cap in the diameter of around 1m, by thermal evaporation of the mixture of ZnS and carbon powder on a tungsten substrate. The mushroom-like nanostructures were characterized by using advanced techniques such as scanning electron microscope (SEM), X ray diffraction (XRD) and Raman spectroscopy. The optical properties of such product were also investigated by photoluminescence spectroscopy, revealing a strong green emission band emerged, which may be attributed to the oxygen vacancies and various surface states. Finally the formation and growth mechanisms for the mushroom-like ZnO nanostructures were proposed and discussed.
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Cite this article as:
Wu Xiang, Jia Boxiang, Qu Fengyu and Zhao Quanqin, Mushroom-like ZnO Nanostructures Grown on Tungsten Substrate, Current Nanoscience 2014; 10 (2) . https://dx.doi.org/10.2174/15734137113096660115
DOI https://dx.doi.org/10.2174/15734137113096660115 |
Print ISSN 1573-4137 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-6786 |
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