Polymer Photovoltaic Cell Using TiO2/G-PEDOT Nanocomplex Film as Electrode

Using TiO2/G-PEDOT (PEDOT/PSS doped with glycerol) nanocomplex film as a substitute for metal electrode in organic photovoltaic cell is described. Indium tin oxide (ITO) worked as cathode and TiO2/G-PEDOT nanocomplex works as anode. The thickness of TiO2 layer in nanocomplex greatly affects the act...

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Main Authors: F. X. Xie, C. J. Liang, Z. Q. He, Y. L. Tao
Format: Article
Language:English
Published: Hindawi Limited 2008-01-01
Series:International Journal of Photoenergy
Online Access:http://dx.doi.org/10.1155/2008/415861
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spelling doaj-4a0b9d6686bd4097a3e17c43f20d82f52020-11-24T23:14:23ZengHindawi LimitedInternational Journal of Photoenergy1110-662X1687-529X2008-01-01200810.1155/2008/415861415861Polymer Photovoltaic Cell Using TiO2/G-PEDOT Nanocomplex Film as ElectrodeF. X. Xie0C. J. Liang1Z. Q. He2Y. L. Tao3Key laboratory of Luminescence and Optical Information, Beijing Jiaotong University, Ministry of Education, Beijing 100044, ChinaKey laboratory of Luminescence and Optical Information, Beijing Jiaotong University, Ministry of Education, Beijing 100044, ChinaKey laboratory of Luminescence and Optical Information, Beijing Jiaotong University, Ministry of Education, Beijing 100044, ChinaKey laboratory of Luminescence and Optical Information, Beijing Jiaotong University, Ministry of Education, Beijing 100044, ChinaUsing TiO2/G-PEDOT (PEDOT/PSS doped with glycerol) nanocomplex film as a substitute for metal electrode in organic photovoltaic cell is described. Indium tin oxide (ITO) worked as cathode and TiO2/G-PEDOT nanocomplex works as anode. The thickness of TiO2 layer in nanocomplex greatly affects the act of this nonmetallic electrode of the device. To enhance its performance, this inverted organic photovoltaic cell uses another TiO2 layer as electron selective layer contacted to ITO coated glass substrates. All films made by solution processing techniques are coated on the transparent substrate (glass) with a conducting film ITO. The efficiency of this solar cell is compared with the conventional device using Al as electrode.http://dx.doi.org/10.1155/2008/415861
collection DOAJ
language English
format Article
sources DOAJ
author F. X. Xie
C. J. Liang
Z. Q. He
Y. L. Tao
spellingShingle F. X. Xie
C. J. Liang
Z. Q. He
Y. L. Tao
Polymer Photovoltaic Cell Using TiO2/G-PEDOT Nanocomplex Film as Electrode
International Journal of Photoenergy
author_facet F. X. Xie
C. J. Liang
Z. Q. He
Y. L. Tao
author_sort F. X. Xie
title Polymer Photovoltaic Cell Using TiO2/G-PEDOT Nanocomplex Film as Electrode
title_short Polymer Photovoltaic Cell Using TiO2/G-PEDOT Nanocomplex Film as Electrode
title_full Polymer Photovoltaic Cell Using TiO2/G-PEDOT Nanocomplex Film as Electrode
title_fullStr Polymer Photovoltaic Cell Using TiO2/G-PEDOT Nanocomplex Film as Electrode
title_full_unstemmed Polymer Photovoltaic Cell Using TiO2/G-PEDOT Nanocomplex Film as Electrode
title_sort polymer photovoltaic cell using tio2/g-pedot nanocomplex film as electrode
publisher Hindawi Limited
series International Journal of Photoenergy
issn 1110-662X
1687-529X
publishDate 2008-01-01
description Using TiO2/G-PEDOT (PEDOT/PSS doped with glycerol) nanocomplex film as a substitute for metal electrode in organic photovoltaic cell is described. Indium tin oxide (ITO) worked as cathode and TiO2/G-PEDOT nanocomplex works as anode. The thickness of TiO2 layer in nanocomplex greatly affects the act of this nonmetallic electrode of the device. To enhance its performance, this inverted organic photovoltaic cell uses another TiO2 layer as electron selective layer contacted to ITO coated glass substrates. All films made by solution processing techniques are coated on the transparent substrate (glass) with a conducting film ITO. The efficiency of this solar cell is compared with the conventional device using Al as electrode.
url http://dx.doi.org/10.1155/2008/415861
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AT zqhe polymerphotovoltaiccellusingtio2gpedotnanocomplexfilmaselectrode
AT yltao polymerphotovoltaiccellusingtio2gpedotnanocomplexfilmaselectrode
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