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Naphthobisthiadiazole-Based Selenophene-Incorporated Quarterchalcogenophene Copolymers for Field-Effect Transistors and Polymer Solar Cells

机译:基于萘唑基唑类苯酚掺入的四分音晶体共聚物,用于场效应晶体管和聚合物太阳能电池

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In this research, we developed six new selenophene-incorporated naphthobisthiadiazole-based donor-acceptor polymers PNT2Th2Se-OD, PNT2Se2Th-OD, PNT4Se-OD, PNT2Th2Se-DT, PNT2Se2Th-DT, and PNT4Se-DT. The structure-property relationships have been systematically established through the comparison of their structural variations: (1) isomeric biselenophene/bithiophene arrangement between PNT2Th2Se and PNT2Se2Th polymers, (2) biselenophene/bithiophene and quarterselenophene donor units between PNT2Th2Se/PNT2Se2Th and PNT4Se polymers, and (3) side-chain modification between the 2-octyldodecylthiophene (OD)- and 2-decyltetradecyl (DT)-series polymers. The incorporation of selenophene units in the copolymers induces stronger charge transfer to improve the light-harvesting capability while maintaining the strong intermolecular interactions to preserve the intrinsic crystallinity for high carrier mobility. The organic field-effect transistor device using PNT2Th2Se-OD achieved a high hole mobility of 0.36 cm(2) V-1 s(-1) with an on/off ratio of 1.9 x 10(5). The solar cells with PNT2Th2Se-OD:PC71BM exhibited a power conversion efficiency of 9.47% with a V-oc of 0.68 V, an fill factor of 67%, and an impressive J(SC), of 20.69 mA cm(-2).
机译:在本研究中,我们开发了六种新的硒肾上腺素萘萘替唑类唑类唑 - 受体聚合物PNT2TH2SE-OD,PNT2SE2TH-OD,PNT4SE-OD,PNT2TH2SE-DT,PNT2SH-DT和PNT4SE-DT。通过比较它们的结构变化来系统地建立了结构性质的关系:(1)在PNT2TH2SE和PNT2Se 2,(2)在PNT2TH2SE / PNT2SE2TH和PNT4SE聚合物之间的双烯烯烯/二硫代丙烯烯和QuartereLenophene供体单元之间的异构体双烯酮/二硫代丙烯烯装置。 (3)2-八羟基二癸基噻吩(OD) - 和2-癸基四癸基(DT)聚合物之间的侧链改性。共聚物中的硒素单元的掺入诱导较强的电荷转移,以改善光收获能力,同时保持强的分子间相互作用以保持高载流子迁移率的固有结晶度。使用PNT2TH2SE-OD的有机场效应晶体管器件实现了0.36cm(2)V-1s(-1)的高空穴迁移率,开/关比为1.9×10(5)。具有PNT2TH2SE-OD的太阳能电池:PC71BM的功率转换效率为9.47%,V-OC为0.68 V,填充因子为67%,令人印象深刻的J(SC),为20.69 mA cm(-2)。

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