Investigation of Window Layer by Pulse Laser Deposition Technology for CdTe Solar Cell Application
碩士 === 正修科技大學 === 電子工程研究所 === 100 === This study focuses on the electrical and optical properties of Al and Y codoped ZnO (AZOY) material transparent conductive thin film of the applied cadmium telluride solar cell window layer. The discuss respect to the properties of AZOY thin films and the change...
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ndltd-TW-100CSU004280142015-10-13T21:07:50Z http://ndltd.ncl.edu.tw/handle/08098794739151594691 Investigation of Window Layer by Pulse Laser Deposition Technology for CdTe Solar Cell Application 脈衝雷射沉積技術研究碲化鎘異質結構太陽能電池之窗口層特性 Jheng-Hong Huang 黃正宏 碩士 正修科技大學 電子工程研究所 100 This study focuses on the electrical and optical properties of Al and Y codoped ZnO (AZOY) material transparent conductive thin film of the applied cadmium telluride solar cell window layer. The discuss respect to the properties of AZOY thin films and the change of thickness (20 nm-220 nm), laser frequency (2 Hz-10 Hz) and annealing temperature (300 oC-500 oC) deposited on ITO substrate by pulsed laser deposition. Using the Hall Measurement to measure the electrical property, the UV/VIS Spectrophotometer to measure the transmittance and the X-ray to analyze the structure. According to the results of experiments, thickness variation in film thickness of 170 nm, laser frequency of 10 Hz and annealing temperature of 400 oC has the best optical and electrical properties. The best quality of AZOY thin films showed high average visible transmittance 81%with TIO substrate, the lowest resistivity of 4.9x10-4 Ω-cm, the highest mobility of 15.5 cm2/Vs, and the highest carrier concentration of 8.1x1020 cm-3. Na-Fu Wang Yu-Zen Tsai 王納富 蔡有仁 2012 學位論文 ; thesis 62 zh-TW |
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碩士 === 正修科技大學 === 電子工程研究所 === 100 === This study focuses on the electrical and optical properties of Al and Y codoped ZnO (AZOY) material transparent conductive thin film of the applied cadmium telluride solar cell window layer.
The discuss respect to the properties of AZOY thin films and the change of thickness (20 nm-220 nm), laser frequency (2 Hz-10 Hz) and annealing temperature (300 oC-500 oC) deposited on ITO substrate by pulsed laser deposition. Using the Hall Measurement to measure the electrical property, the UV/VIS Spectrophotometer to measure the transmittance and the X-ray to analyze the structure.
According to the results of experiments, thickness variation in film thickness of 170 nm, laser frequency of 10 Hz and annealing temperature of 400 oC has the best optical and electrical properties. The best quality of AZOY thin films showed high average visible transmittance 81%with TIO substrate, the lowest resistivity of 4.9x10-4 Ω-cm, the highest mobility of 15.5 cm2/Vs, and the highest carrier concentration of 8.1x1020 cm-3.
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author2 |
Na-Fu Wang |
author_facet |
Na-Fu Wang Jheng-Hong Huang 黃正宏 |
author |
Jheng-Hong Huang 黃正宏 |
spellingShingle |
Jheng-Hong Huang 黃正宏 Investigation of Window Layer by Pulse Laser Deposition Technology for CdTe Solar Cell Application |
author_sort |
Jheng-Hong Huang |
title |
Investigation of Window Layer by Pulse Laser Deposition Technology for CdTe Solar Cell Application |
title_short |
Investigation of Window Layer by Pulse Laser Deposition Technology for CdTe Solar Cell Application |
title_full |
Investigation of Window Layer by Pulse Laser Deposition Technology for CdTe Solar Cell Application |
title_fullStr |
Investigation of Window Layer by Pulse Laser Deposition Technology for CdTe Solar Cell Application |
title_full_unstemmed |
Investigation of Window Layer by Pulse Laser Deposition Technology for CdTe Solar Cell Application |
title_sort |
investigation of window layer by pulse laser deposition technology for cdte solar cell application |
publishDate |
2012 |
url |
http://ndltd.ncl.edu.tw/handle/08098794739151594691 |
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