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  4. Effects of bifunctional linker on the performance of P3HT/CdSe quantum dot-linker-ZnO nanocolumn photovoltaic device
 
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Effects of bifunctional linker on the performance of P3HT/CdSe quantum dot-linker-ZnO nanocolumn photovoltaic device

Journal
Optics Express
Journal Volume
18
Journal Issue
S3
Pages
A357-A365
Date Issued
2010
Author(s)
Zeng, Tsung-Wei
Liu, I-Shuo
Hsu, Fang-Chi
Huang, Kuo-Tung
Liao, Hsuieh-Chung
Su, Wei-Fang
WEI-FANG SU  
DOI
10.1364/OE.18.00A357
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-85010145160&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/360503
Abstract
We study the effects of bifunctional linker on the photovoltaic properties of P3HT/CdSe quantum dot-linker-ZnO nanocolumn heterostructure. The CdSe quantum dots are bound on the surface of ZnO nanocolumns through either aliphatic linker of 3-aminopropyl trimethoxysilane(APS) or aromatic linker of p-aminophenyl trimethoxysilane(APhS) using simple solution process. As compared to CdSe bound by aliphatic linker(APS), while CdSe is bound by aromatic linker(APhS), more than one fold increase of short circuit current density (JSC) of the device obtained under irradiance, which is attributed to a more efficient charge transfer dynamics at interface. In addition, the ZnO-APhSCdSe/ P3HT devices possess about 4.8 folds in power conversion efficiency as compared to ZnO/P3HT device as the results of reduction in shunt loss and interfacial recombination. © 2010 Optical Society of America.
SDGs

[SDGs]SDG7

Type
journal article

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