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Synthesis of a conjugated pyrrolopyridazinedione–benzodithiophene (PPD–BDT) copolymer and its application in organic and hybrid solar cells

机译:共轭吡咯并哒嗪二酮-苯并二噻吩(PPD-BDT)共聚物的合成及其在有机和混合太阳能电池中的应用

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摘要

AbstractHerein, we describe the synthesis and characterization of a conjugated donor–acceptor copolymer consisting of a pyrrolopyridazinedione (PPD) acceptor unit, and a benzodithiophene (BDT) donor unit. The polymerization was done via a Stille cross-coupling polycondensation. The resulting PPD–BDT copolymer revealed an optical bandgap of 1.8 eV and good processability from chlorobenzene solutions. In an organic solar cell in combination with PC70BM, the polymer led to a power conversion efficiency of 4.5%. Moreover, the performance of the copolymer was evaluated in polymeranocrystal hybrid solar cells using non-toxic CuInS2 nanocrystals as inorganic phase, which were prepared from precursors directly in the polymer matrix without using additional capping ligands. The PPD–BDT/CuInS2 hybrid solar cells showed comparably high photovoltages and a power conversion efficiency of 2.2%.
机译:摘要这里,我们描述了由吡咯并哒嗪二酮(PPD)受体单元和苯并二噻吩(BDT)供体单元组成的共轭供体-受体共聚物的合成和表征。聚合通过Stille交叉偶联缩聚完成。所得的PPD-BDT共聚物显示出1.8 eV的光学带隙和氯苯溶液的良好加工性能。在与PC70BM结合的有机太阳能电池中,该聚合物的功率转换效率为4.5%。此外,使用无毒的CuInS2纳米晶体作为无机相,在聚合物/纳米晶体混合太阳能电池中评估了共聚物的性能,这些晶体是由前驱体直接在聚合物基质中制备的,而无需使用额外的封端配体。 PPD-BDT / CuInS2混合太阳能电池显示出相当高的光电压和2.2%的功率转换效率。

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