Presentation 2014-04-17
Electrodeposition of CuSCN and its application to organic solar cells
Yuta Ogawa, Lina Sun, Tsukasa Yoshida, White Matthew Schuette, Scharber Marcus Clark, Sariciftci Niyazi Serdar,
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Abstract(in English) We compare this to the commonly used n-type scaffold, which has been reported many times in the literature. The scaffold is designed to improve charge carrier collection by increased mobility in thicker samples. Our observations show that, quite generally, the device performance shows a negative correlation to nanorod length. This extends to the point that a compact layer, with no rods whatsoever, is better for devices. We report the electrodeposition of p-type inorganic semiconductor and analysis of formed nanorod and it is introduced to a polymer-fullerene bulk-heterojunction solar cell.
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Keyword(in English) organic solar cells / CuSCN / nanorod / electrodeposition
Paper # ED2014-2
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Committee ED
Conference Date 2014/4/10(1days)
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Registration To Electron Devices (ED)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Electrodeposition of CuSCN and its application to organic solar cells
Sub Title (in English)
Keyword(1) organic solar cells
Keyword(2) CuSCN
Keyword(3) nanorod
Keyword(4) electrodeposition
1st Author's Name Yuta Ogawa
1st Author's Affiliation ()
2nd Author's Name Lina Sun
2nd Author's Affiliation /
3rd Author's Name Tsukasa Yoshida
3rd Author's Affiliation Johannes Kepler University Linz
4th Author's Name White Matthew Schuette
4th Author's Affiliation Johannes Kepler University Linz
5th Author's Name Scharber Marcus Clark
5th Author's Affiliation Johannes Kepler University Linz
6th Author's Name Sariciftci Niyazi Serdar
6th Author's Affiliation
Date 2014-04-17
Paper # ED2014-2
Volume (vol) vol.114
Number (no) 12
Page pp.pp.-
#Pages 3
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