A study of Zinc Oxide Nanostructure Enhanced Effecct of Interdigitated Back Contact Solar Cell

碩士 === 國立臺南大學 === 綠色能源科技學系碩士班 === 106 === Since human beings have realized the excessive emissions of greenhouse gases, they have begun to look for other energy to replace exsiting energy that emit large amounts of greenhouse gases, including nuclear energy and renewable energy. Renewable energy inc...

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Main Authors: Lin,Jia-Ying, 林佳穎
Other Authors: Tang,I-Tseng
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/kp53yr
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spelling ndltd-TW-106NTNT01600052019-05-16T00:44:55Z http://ndltd.ncl.edu.tw/handle/kp53yr A study of Zinc Oxide Nanostructure Enhanced Effecct of Interdigitated Back Contact Solar Cell 奈米氧化鋅加強指叉狀背電極太陽能電池之研究 Lin,Jia-Ying 林佳穎 碩士 國立臺南大學 綠色能源科技學系碩士班 106 Since human beings have realized the excessive emissions of greenhouse gases, they have begun to look for other energy to replace exsiting energy that emit large amounts of greenhouse gases, including nuclear energy and renewable energy. Renewable energy includes solar energy, wind energy, hydraulic energy, geothermal energy and other energy. In the development of solar cells, in addition to Si solar cells, there are semiconductor solar cells and dye-sensitized solar cells. In this paper, we choose Si substrade solar cells, grow ZnO on the surface by microwave heaters. We used microwave-assisted hydrothermal method to grow .We we used microwave heaters is that it can grow rapidly, reduce much time, and it have easy steps. Mainly in this way of growth, to explore the relationship between different concentrations of ZnO and the improvement of solar cell’s efficiency. In this paper, including SEM,XRD,EDS, efficiency image, absorption image, and reflection image. The best efficiency is 0.07M ZnO. In the same specifications, the solar cell without growth of ZnO’s efficiency only 9.2%, but the solar cell that growth of 0.07M ZnO can reach 12.1%. Tang,I-Tseng Fang,Te-Hua 湯譯增 方得華 2018 學位論文 ; thesis 42 zh-TW
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language zh-TW
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description 碩士 === 國立臺南大學 === 綠色能源科技學系碩士班 === 106 === Since human beings have realized the excessive emissions of greenhouse gases, they have begun to look for other energy to replace exsiting energy that emit large amounts of greenhouse gases, including nuclear energy and renewable energy. Renewable energy includes solar energy, wind energy, hydraulic energy, geothermal energy and other energy. In the development of solar cells, in addition to Si solar cells, there are semiconductor solar cells and dye-sensitized solar cells. In this paper, we choose Si substrade solar cells, grow ZnO on the surface by microwave heaters. We used microwave-assisted hydrothermal method to grow .We we used microwave heaters is that it can grow rapidly, reduce much time, and it have easy steps. Mainly in this way of growth, to explore the relationship between different concentrations of ZnO and the improvement of solar cell’s efficiency. In this paper, including SEM,XRD,EDS, efficiency image, absorption image, and reflection image. The best efficiency is 0.07M ZnO. In the same specifications, the solar cell without growth of ZnO’s efficiency only 9.2%, but the solar cell that growth of 0.07M ZnO can reach 12.1%.
author2 Tang,I-Tseng
author_facet Tang,I-Tseng
Lin,Jia-Ying
林佳穎
author Lin,Jia-Ying
林佳穎
spellingShingle Lin,Jia-Ying
林佳穎
A study of Zinc Oxide Nanostructure Enhanced Effecct of Interdigitated Back Contact Solar Cell
author_sort Lin,Jia-Ying
title A study of Zinc Oxide Nanostructure Enhanced Effecct of Interdigitated Back Contact Solar Cell
title_short A study of Zinc Oxide Nanostructure Enhanced Effecct of Interdigitated Back Contact Solar Cell
title_full A study of Zinc Oxide Nanostructure Enhanced Effecct of Interdigitated Back Contact Solar Cell
title_fullStr A study of Zinc Oxide Nanostructure Enhanced Effecct of Interdigitated Back Contact Solar Cell
title_full_unstemmed A study of Zinc Oxide Nanostructure Enhanced Effecct of Interdigitated Back Contact Solar Cell
title_sort study of zinc oxide nanostructure enhanced effecct of interdigitated back contact solar cell
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/kp53yr
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