首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Tuning joint sequence for donor-acceptor polymers based on fluorinated benzothiadiazole with thiophene/furan bridecakes
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Tuning joint sequence for donor-acceptor polymers based on fluorinated benzothiadiazole with thiophene/furan bridecakes

机译:基于氟化苯并噻二唑与噻吩/呋喃新娘蛋糕的供体-受体聚合物的调谐联合序列

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摘要

Three new donoreacceptor (DeA) polymers, PTBDT-ffBT-FT12, PTBDT-ffBT-TT12 and PTBDT-ffBT-T12T, based on thiophene substituted benzene[1,2-b:4,5-b'] thiophene (TBDT) and fluorinated benzothiadiazole (ffBT) with thiophene/furan conjugated bridges were prepared. The joint sequence of alkyl thiophene/furan bridges has significant influence on the energy levels, band-gap and molecule stacking of the copolymers. All copolymers show broad absorption bands, and the energy level and band gap could be well fine-tuned by the introduction of thiophene/furan bridges to polymer backbone. The small atomic radius of oxygen atom on furan bridges resulted in the inferior co-planarity and torsion backbone for PTBDT-ffBT-FT12 with furan bridges, while the adjacent dodecyl on thiophene bridges close to TBDT led to a big steric hindrance. As a result, the polymer solar cell (PSC) based on PTBDT-ffBT-T12T achieves the better efficiency compared to PTBDT-ffBT-FT12 and PTBDT-ffBT-TT12. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于噻吩取代的苯[1,2-b:4,5-b']噻吩(TBDT)和苯并噻唑的三种新的供体受体聚合物制备了带有噻吩/呋喃共轭桥的氟化苯并噻二唑(ffBT)。烷基噻吩/呋喃桥的连接顺序对共聚物的能级,带隙和分子堆积都有重要影响。所有共聚物均显示出较宽的吸收带,通过将噻吩/呋喃桥引入聚合物主链可以很好地调节能级和能带隙。呋喃桥上氧原子的原子半径较小,导致带有呋喃桥的PTBDT-ffBT-FT12的共平面性和扭转主链较差,而靠近TBDT的噻吩桥上相邻的十二烷基导致较大的空间位阻。结果,与PTBDT-ffBT-FT12和PTBDT-ffBT-TT12相比,基于PTBDT-ffBT-T12T的聚合物太阳能电池(PSC)实现了更好的效率。 (C)2015 Elsevier Ltd.保留所有权利。

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