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Cyclopentadithiophene-benzothiadiazole copolymers with permutations of repeating unit length and ratios; synthesis, optical and electrochemical properties and photovoltaic characteristics

机译:环戊二噻吩 - 苯并噻二唑共聚物,具有重复单元长度和比例的排列;合成,光学和电化学性质和光伏特性

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摘要

Conjugated copolymers with varying ratios and lengths of cyclopentadithiophene (CPDT) to benzothiadiazole (BT) repeating units, -[(CPDT)(x)-(BT)(y)](n)-, have been synthesized by palladium complex catalysed Suzuki coupling polymerisation, direct arylation polymerisation or oxidative polymerisation using iron(III) chloride. The different permutations of the co-polymers allow for tuning of the optical and electrical properties. To our knowledge, this is one of the first studies of its kind for conjugated polymers for use in OPVs. The optical band gaps were measured between 1.7 and 2.0 eV in film, in which the polymer with ratios of CPDT : BT (x : y = 1 : 1) units showed the lowest bandgap followed by x : y = 1 : 2, 2 : 1, 2 : 2 and 3 : 3. Hole mobility and solar cell performance of these polymers with PC61BM as the electron acceptor were measured. A relatively small variation in hole mobility was observed between polymers. However, the best reported power conversion efficiency (PCE) was measured at 2.5% when processed in the absence of any additives using the polymer with ratios of CPDT : BT (x : y = 2 : 2), which was followed by the ratios of x : y = 2 : 1, 1 : 1, 1 : 2 and 3 : 3, indicating that variation of the ratios and length of donor and acceptor units affect OPV performance and better performance is achievable by careful consideration of the donor-to-acceptor ratio.
机译:通过钯络合物催化的Suzuki偶联合成了具有不同比例和长度的环戊二噻吩(CPDT)与苯并噻二唑(BT)重复单元-[(CPDT)(x)-(BT)(y)](n)-的共轭共聚物。聚合,直接芳基化聚合或使用氯化铁(III)的氧化聚合。共聚物的不同排列允许调节光学和电学性质。据我们所知,这是用于OPV的共轭聚合物的同类研究之一。在膜中测得的光学带隙介于1.7和2.0 eV之间,其中CPDT:BT(x:y = 1:1)比例的聚合物显示出最低的带隙,其次是x:y = 1:2、2:2。分别以1、2:2和3:3进行测量。以PC61BM为电子受体的这些聚合物的空穴迁移率和太阳能电池性能被测量。在聚合物之间观察到相对较小的空穴迁移率变化。但是,在没有任何添加剂的情况下,使用CPDT:BT(x:y = 2:2)的比例在没有任何添加剂的情况下进行处理时,据报道,最佳的功率转换效率(PCE)为2.5%。 x:y = 2:1、1:1、1:2和3:3,这表明供体和受体单元的比例和长度的变化会影响OPV的性能,通过仔细考虑供体对受体比率。

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