The study of zinx oxide nanostructures synthesis aqueous solution method

碩士 === 雲林科技大學 === 光學電子工程研究所 === 98 === In this study, ZnO seed layer was deposited on glass structure by the RF sputtering system, and then nanorods arrays were prepared by low temperature aqueous solution aqueous solution reaction concentration, temperature, time process Variables on structure of Z...

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Main Authors: Zong-Xian Zheng, 鄭宗賢
Other Authors: Chien-Sheng Huang
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/18886905613569311526
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spelling ndltd-TW-098YUNT51240102015-10-13T18:58:57Z http://ndltd.ncl.edu.tw/handle/18886905613569311526 The study of zinx oxide nanostructures synthesis aqueous solution method 水溶液法成長氧化鋅奈米結構特性分析與研究 Zong-Xian Zheng 鄭宗賢 碩士 雲林科技大學 光學電子工程研究所 98 In this study, ZnO seed layer was deposited on glass structure by the RF sputtering system, and then nanorods arrays were prepared by low temperature aqueous solution aqueous solution reaction concentration, temperature, time process Variables on structure of ZnO nanorods, the morphology and composition of the ZnO nanorods was observed using Field-emission scanning electron microscopy (FE-SEM) show that the aspect ratios of the ZnO nanorods are enhanced when the concentration is decreased and the temperature is increased, the Energy dispersive spectrometers (EDS) show that Atomic(%) of zinc content are enhanced when the concentration and time are increased , Atomic(%) of oxide content decreased, Atomic(%) of zinc content more than the oxygen atoms, the X-ray diffraction (XRD) patterns show that ZnO nanorods arrays were similar XRD patterns indicating the nanorods in high crystallinity, indicating excellent orientation in the c-axis direction, PL spectra show that the green/uv ratios decreased when ration concentration is increased, multi-stage increased the ZnO nanorods surface area and DSSC efficiencies, ZnO/TiO2 structure increase in dye adsorption, improve DSSC efficiency. Chien-Sheng Huang 黃建盛 2010 學位論文 ; thesis 96 zh-TW
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language zh-TW
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description 碩士 === 雲林科技大學 === 光學電子工程研究所 === 98 === In this study, ZnO seed layer was deposited on glass structure by the RF sputtering system, and then nanorods arrays were prepared by low temperature aqueous solution aqueous solution reaction concentration, temperature, time process Variables on structure of ZnO nanorods, the morphology and composition of the ZnO nanorods was observed using Field-emission scanning electron microscopy (FE-SEM) show that the aspect ratios of the ZnO nanorods are enhanced when the concentration is decreased and the temperature is increased, the Energy dispersive spectrometers (EDS) show that Atomic(%) of zinc content are enhanced when the concentration and time are increased , Atomic(%) of oxide content decreased, Atomic(%) of zinc content more than the oxygen atoms, the X-ray diffraction (XRD) patterns show that ZnO nanorods arrays were similar XRD patterns indicating the nanorods in high crystallinity, indicating excellent orientation in the c-axis direction, PL spectra show that the green/uv ratios decreased when ration concentration is increased, multi-stage increased the ZnO nanorods surface area and DSSC efficiencies, ZnO/TiO2 structure increase in dye adsorption, improve DSSC efficiency.
author2 Chien-Sheng Huang
author_facet Chien-Sheng Huang
Zong-Xian Zheng
鄭宗賢
author Zong-Xian Zheng
鄭宗賢
spellingShingle Zong-Xian Zheng
鄭宗賢
The study of zinx oxide nanostructures synthesis aqueous solution method
author_sort Zong-Xian Zheng
title The study of zinx oxide nanostructures synthesis aqueous solution method
title_short The study of zinx oxide nanostructures synthesis aqueous solution method
title_full The study of zinx oxide nanostructures synthesis aqueous solution method
title_fullStr The study of zinx oxide nanostructures synthesis aqueous solution method
title_full_unstemmed The study of zinx oxide nanostructures synthesis aqueous solution method
title_sort study of zinx oxide nanostructures synthesis aqueous solution method
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/18886905613569311526
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