Study of Dye-sensitized Solar Cell with Sputtered Various Metallic Thin Film on Photoelectrode
碩士 === 國立清華大學 === 工程與系統科學系 === 97 === In order to improve the interfacial conductance and suppress interfacial recombination between TiO2 porous layer and F-doped SnO2 transparent conductive layer (FTO) of dye-sensitized solar cells (DSSCs), three different work function metal titanium (Ti), aluminu...
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ndltd-TW-097NTHU55930582015-10-13T12:09:18Z http://ndltd.ncl.edu.tw/handle/16492186027087509997 Study of Dye-sensitized Solar Cell with Sputtered Various Metallic Thin Film on Photoelectrode 濺鍍不同金屬薄膜於染料敏化太陽電池工作電極之特性研究 Chen, Chien-Ting 陳建廷 碩士 國立清華大學 工程與系統科學系 97 In order to improve the interfacial conductance and suppress interfacial recombination between TiO2 porous layer and F-doped SnO2 transparent conductive layer (FTO) of dye-sensitized solar cells (DSSCs), three different work function metal titanium (Ti), aluminum (Al), palladium (Pd) thin-film were deposited by sputtering on FTO. Only for high transmittance and low work function metal Ti can enhance DSSCs photovoltaic properties. High transmittance of Ti thin-film helps the light harvesting efficiency (LHE), and low work function of Ti (4.33 eV), after contacted with porous TiO2 layer was formed proper Ohmic contact and blocking layer. It could help electrons transport into FTO smoothly and prevent the back reaction. The Ti-deposited thin film DSSCs give the significantly improvement of the short-circuit photocurrent density (Jsc) about 24% over that of standard (bare-FTO) cell, finally resulting in a 4.65% energy conversion efficiency (η), which is about 20% higher than that of standard one. In incident monochromatic photon-to-current conversion efficiency (IPCE) spectra, Ti-deposited DSSCs also reveal higher value than Al and Pd-deposited DSSCs. Wu, Yung-Chun 吳永俊 2009 學位論文 ; thesis 64 en_US |
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碩士 === 國立清華大學 === 工程與系統科學系 === 97 === In order to improve the interfacial conductance and suppress interfacial recombination between TiO2 porous layer and F-doped SnO2 transparent conductive layer (FTO) of dye-sensitized solar cells (DSSCs), three different work function metal titanium (Ti), aluminum (Al), palladium (Pd) thin-film were deposited by sputtering on FTO. Only for high transmittance and low work function metal Ti can enhance DSSCs photovoltaic properties. High transmittance of Ti thin-film helps the light harvesting efficiency (LHE), and low work function of Ti (4.33 eV), after contacted with porous TiO2 layer was formed proper Ohmic contact and blocking layer. It could help electrons transport into FTO smoothly and prevent the back reaction. The Ti-deposited thin film DSSCs give the significantly improvement of the short-circuit photocurrent density (Jsc) about 24% over that of standard (bare-FTO) cell, finally
resulting in a 4.65% energy conversion efficiency (η), which is about 20% higher than that of standard one. In incident monochromatic photon-to-current conversion
efficiency (IPCE) spectra, Ti-deposited DSSCs also reveal higher value than Al and Pd-deposited DSSCs.
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author2 |
Wu, Yung-Chun |
author_facet |
Wu, Yung-Chun Chen, Chien-Ting 陳建廷 |
author |
Chen, Chien-Ting 陳建廷 |
spellingShingle |
Chen, Chien-Ting 陳建廷 Study of Dye-sensitized Solar Cell with Sputtered Various Metallic Thin Film on Photoelectrode |
author_sort |
Chen, Chien-Ting |
title |
Study of Dye-sensitized Solar Cell with Sputtered Various Metallic Thin Film on Photoelectrode |
title_short |
Study of Dye-sensitized Solar Cell with Sputtered Various Metallic Thin Film on Photoelectrode |
title_full |
Study of Dye-sensitized Solar Cell with Sputtered Various Metallic Thin Film on Photoelectrode |
title_fullStr |
Study of Dye-sensitized Solar Cell with Sputtered Various Metallic Thin Film on Photoelectrode |
title_full_unstemmed |
Study of Dye-sensitized Solar Cell with Sputtered Various Metallic Thin Film on Photoelectrode |
title_sort |
study of dye-sensitized solar cell with sputtered various metallic thin film on photoelectrode |
publishDate |
2009 |
url |
http://ndltd.ncl.edu.tw/handle/16492186027087509997 |
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