Effect of ZnO nanostructure on the Performance of Hybrid P3HT/ZnO nanorod Solar cell

碩士 === 國立臺灣科技大學 === 化學工程系 === 96 === In this studies, we used hydrothermal method to grow the nanorods on the seed layer , then make it to be organic solar cell devices. We use XRD, SEM, & PL analyze the morphology and crystallinity, then measured the I-V curve and efficiency of solar cells. In...

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Main Authors: Ming-Hsien Hsieh, 謝明憲
Other Authors: Chin-Hsin J. Liu
Format: Others
Language:zh-TW
Published: 2008
Online Access:http://ndltd.ncl.edu.tw/handle/50048731897328730342
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spelling ndltd-TW-096NTUS50630442016-05-13T04:15:16Z http://ndltd.ncl.edu.tw/handle/50048731897328730342 Effect of ZnO nanostructure on the Performance of Hybrid P3HT/ZnO nanorod Solar cell 氧化鋅奈米桿之探討及其對Hybrid氧化鋅奈米桿/P3HT太陽能電池效率之影響 Ming-Hsien Hsieh 謝明憲 碩士 國立臺灣科技大學 化學工程系 96 In this studies, we used hydrothermal method to grow the nanorods on the seed layer , then make it to be organic solar cell devices. We use XRD, SEM, & PL analyze the morphology and crystallinity, then measured the I-V curve and efficiency of solar cells. In Bulk-heterojunction devices, use nanorods as acceptor was better than bilayer. We found that (1) seed layer thickness, (2) hydrothermal concertration could change the interspace of nanorods, (3)hydrothermal temperature would influence the length, the in seed layer spray time 10 min, hydrothermal growth time 2hr, hydrothermal concertration 0.04M hydrothermal temperature 90℃, the nanorods exhibited the best efficiency of solar cells, it’s interspacing was 15nm, length 210nm and the nanorods revealed the strong (002) preferred orientation, and the efficiency of bilayer device was much smaller the nanorods type device. The best efficiency in our ITO / ZnO / P3HT / PEDOT:PSS / Au structure solar cells was about 0.60%. In future the interface of polymer and nanorods need to improve, we hope that can enchance the efficiency of solar cells. Chin-Hsin J. Liu 劉進興 2008 學位論文 ; thesis 111 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣科技大學 === 化學工程系 === 96 === In this studies, we used hydrothermal method to grow the nanorods on the seed layer , then make it to be organic solar cell devices. We use XRD, SEM, & PL analyze the morphology and crystallinity, then measured the I-V curve and efficiency of solar cells. In Bulk-heterojunction devices, use nanorods as acceptor was better than bilayer. We found that (1) seed layer thickness, (2) hydrothermal concertration could change the interspace of nanorods, (3)hydrothermal temperature would influence the length, the in seed layer spray time 10 min, hydrothermal growth time 2hr, hydrothermal concertration 0.04M hydrothermal temperature 90℃, the nanorods exhibited the best efficiency of solar cells, it’s interspacing was 15nm, length 210nm and the nanorods revealed the strong (002) preferred orientation, and the efficiency of bilayer device was much smaller the nanorods type device. The best efficiency in our ITO / ZnO / P3HT / PEDOT:PSS / Au structure solar cells was about 0.60%. In future the interface of polymer and nanorods need to improve, we hope that can enchance the efficiency of solar cells.
author2 Chin-Hsin J. Liu
author_facet Chin-Hsin J. Liu
Ming-Hsien Hsieh
謝明憲
author Ming-Hsien Hsieh
謝明憲
spellingShingle Ming-Hsien Hsieh
謝明憲
Effect of ZnO nanostructure on the Performance of Hybrid P3HT/ZnO nanorod Solar cell
author_sort Ming-Hsien Hsieh
title Effect of ZnO nanostructure on the Performance of Hybrid P3HT/ZnO nanorod Solar cell
title_short Effect of ZnO nanostructure on the Performance of Hybrid P3HT/ZnO nanorod Solar cell
title_full Effect of ZnO nanostructure on the Performance of Hybrid P3HT/ZnO nanorod Solar cell
title_fullStr Effect of ZnO nanostructure on the Performance of Hybrid P3HT/ZnO nanorod Solar cell
title_full_unstemmed Effect of ZnO nanostructure on the Performance of Hybrid P3HT/ZnO nanorod Solar cell
title_sort effect of zno nanostructure on the performance of hybrid p3ht/zno nanorod solar cell
publishDate 2008
url http://ndltd.ncl.edu.tw/handle/50048731897328730342
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