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Kim, Jin Young
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Thiophene and Naphtho[1,2-c:5,6-c]bis[1,2,5]thiadiazole Based Alternating Copolymers for Polymer Solar Cells

Author(s)
Li, YuxiangLee, Tack HoKim, JihyeonPark, Song YiSong, SeyeongHwang, SunguKim, Jin YoungWoo, Han Young
Issued Date
2016-09
DOI
10.2494/photopolymer.29.553
URI
https://scholarworks.unist.ac.kr/handle/201301/20490
Fulltext
https://www.jstage.jst.go.jp/article/photopolymer/29/4/29_553/_article
Citation
JOURNAL OF PHOTOPOLYMER SCIENCE AND TECHNOLOGY, v.29, no.4, pp.553 - 559
Abstract
Two planar type photovoltaic polymers based on naphthobisthiadiazole, poly(2,5-bis(2-hexyldecyloxy)phenylene-alt-(5,10-dithiophen-2-yl)naphtho [1,2-c :5,6-c]bis [1,2,5]thiadiazole) (h-PPDTNTz) and poly(2,5-bis(2-decyltetradecyloxy)phenylene-alt-(5,10-dithiophen-2-yl)naphtho [1,2-c:5,6-c]bis[1,2,5]thiadiazole) (d-PPDTNTz) were synthesized by incorporating intrachain noncovalent Coulombic interactions in the molecular design. To achieve a delicate balance of molecular weight, solubility as well as bulk film morphology, hexyldecyloxy (h-) and decyltetradecyloxy (d-) side-chains were substituted, which played a decisive role in modulating morphology, film packing structure and macroscopic device properties. Both polymers showed a broad light absorption up to similar to 800 nm and d-PPDTNTz exhibited a deeper HOMO and preferentially face-on orientation in pristine and blended films with PCIIBM. The detailed optical, electrochemical, thermal, morphological and the resulting photovoltaic characteristics were studied. The best power conversion efficiency of similar to 6.7% was measured for d-PPDTNTz:PC71BM, suggesting that the careful choice of side-chains is necessary for fully optimize the photovoltaic materials and devices.
Publisher
TECHNICAL ASSOC PHOTOPOLYMERS
ISSN
0914-9244
Keyword (Author)
Naphtho[1,2-c:5,6-c]bis[1,2,5]thiadiazole (NTz)Noncovalent Coulombic interactionsPlanaritySemi-crystallinephotovoltaicPolymer solar cells (PSCs)
Keyword
NAPHTHOBISTHIADIAZOLE COPOLYMERSPHOTOVOLTAIC PROPERTIESORGANIC PHOTOVOLTAICSHIGHLY EFFICIENTBANDGAP POLYMERDESIGN

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