DOI | Resolve DOI: https://doi.org/10.1021/ja200314m |
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Author | Search for: Chu, Ta-Ya1; Search for: Lu, Jianping1; Search for: Beaupré, Serge; Search for: Zhang, Yanguang1ORCID identifier: https://orcid.org/0000-0002-8957-5534; Search for: Pouliot, Jean-Rémi; Search for: Wakim, Salem1; Search for: Zhou, Jiayun1; Search for: Leclerc, Mario; Search for: Li, Zhao2; Search for: Ding, Jianfu2; Search for: Tao, Ye1 |
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Affiliation | - National Research Council of Canada. NRC Institute for Microstructural Sciences
- National Research Council of Canada. NRC Institute for Chemical Process and Environmental Technology
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Format | Text, Article |
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Subject | active area; alkyl chain; alternating copolymer; band gaps; bulk heterojunction solar cells; dithienosilole; highest occupied molecular orbital energy levels; photovoltaic devices; power conversion efficiencies; silole copolymers; conversion efficiency; copolymerization; copolymers; molecular orbitals; photovoltaic effects; heterojunctions; alkyl group; copolymer; dithieno[3,2 b:20,30 d]silole; polymer; thieno[3,4 c]pyrrole 4,6 dione; unclassified drug; energy conversion; solubility; molecular structure; organosilicon compounds; polymers; pyrroles |
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Abstract | A new alternating copolymer of dithienosilole and thienopyrrole-4,6-dione (PDTSTPD) possesses both a low optical bandgap (1.73 eV) and a deep highest occupied molecular orbital energy level (5.57 eV). The introduction of branched alkyl chains to the dithienosilole unit was found to be critical for the improvement of the polymer solubility. When blended with PC₇₁BM, PDTSTPD exhibited a power conversion efficiency of 7.3% on the photovoltaic devices with an active area of 1 cm² |
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Publication date | 2011-03-04 |
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Publisher | American Chemical Society |
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In | |
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Language | English |
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Peer reviewed | Yes |
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NPARC number | 21271458 |
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Export citation | Export as RIS |
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Report a correction | Report a correction (opens in a new tab) |
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Record identifier | 9145a074-2f7b-4088-84f4-11da58cff2e8 |
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Record created | 2014-03-24 |
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Record modified | 2024-01-15 |
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