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  4. Efficient Vacuum-Deposited Ternary Organic Solar Cells with Broad Absorption, Energy Transfer, and Enhanced Hole Mobility
 
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Efficient Vacuum-Deposited Ternary Organic Solar Cells with Broad Absorption, Energy Transfer, and Enhanced Hole Mobility

Journal
ACS Applied Materials and Interfaces
Journal Volume
8
Journal Issue
2
Pages
1214-1219
Date Issued
2016
Author(s)
Shim, H.-S.
Moon, C.-K.
Kim, J.
Wang, C.-K.
Sim, B.
Lin, F.
KEN-TSUNG WONG  
Seo, Y.
Kim, J.-J.
DOI
10.1021/acsami.5b09620
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-84955509847&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/396170
Abstract
The use of multiple donors in an active layer is an effective way to boost the efficiency of organic solar cells by broadening their absorption window. Here, we report an efficient vacuum-deposited ternary organic photovoltaic (OPV) using two donors, 2-((2-(5-(4-(diphenylamino)phenyl)thieno[3,2-b]thiophen-2-yl)thiazol-5-yl)methylene)malononitrile (DTTz) for visible absorption and 2-((7-(5-(dip-tolylamino)thiophen-2-yl)benzo[c]-[1,2,5]thiadiazol-4-yl)methylene)malononitrile (DTDCTB) for near-infrared absorption, codeposited with C70 in the ternary layer. The ternary device achieved a power conversion efficiency of 8.02%, which is 23% higher than that of binary OPVs. This enhancement is the result of incorporating two donors with complementary absorption covering wavelengths of 350 to 900 nm with higher hole mobility in the ternary layer than that of binary layers consisting of one donor and C70, combined with energy transfer from the donor with lower hole mobility (DTTz) to that with higher mobility (DTDCTB). This structure fulfills all the requirements for efficient ternary OPVs. © 2015 American Chemical Society.
Subjects
broad absorption; cascade energy levels; energy transfer; ternary layer; vacuum deposition
SDGs

[SDGs]SDG7

Other Subjects
Bins; C (programming language); Energy transfer; Infrared devices; Light absorption; Solar cells; Vacuum deposition; Absorption windows; Broad absorptions; Malononitriles; Near-infrared absorption; Organic photovoltaic (OPV); Organic solar cell; Power conversion efficiencies; Ternary layers; Hole mobility
Type
journal article

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