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Randomly Distributed Conjugated Polymer Repeat Units for High-Efficiency Photovoltaic Materials with Enhanced Solubility and Processability

机译:随机分布的共轭聚合物重复单元,具有增强的溶解度和加工性的高效光伏材料

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摘要

Three structurally disordered terpolymer derivatives of PffBT4T-2OD (PCE11), prepared by replacing a varied amount of bithiophene linkers with single thiophenes, were found to exhibit reduced aggregation in solution with increasing thiophene content, while important redox and optoelectronic properties remained similar to those of PffBT4T-2OD. Solar cells based on random terpolymer-PC71BM blends exhibited average power conversion efficiencies of over 9.5% when processed with preheated substrates, with fill factors above 70%, exceeding those from PffBT4T-2OD. Thanks to increased solubility, random terpolymer devices were able to be fabricated on room-temperature substrates, reaching virtually identical performance among all three polymers despite remarkable thicknesses of similar to 400 nm. Thus, we show that the random terpolymer approach is successful in improving processability while maintaining device performance.
机译:通过用单缩素替换多种二苯甲烯烯接头制备的PFFBT4T-2D(PCE11)的三种结构紊乱的三元共聚物衍生物在溶液中具有增加的噻吩含量,而重要的氧化还原和光电性质仍然类似于 pffbt4t-2od。 基于随机萜烯聚合物-CC71BM共混物的太阳能电池在用预热基材加工时显示出超过9.5%的平均功率转化效率,填充因子以上70%以上超过PFFBT4T-2D。 由于溶解度的增加,尽管类似于400nm的厚度显着厚度,但是在室温衬底上能够在室温衬底上制造随机萜酯装置,尽管类似于400nm的厚度显着厚度,但在所有三种聚合物中达到几乎相同的性能。 因此,我们表明随机三元共聚物方法在保持设备性能的同时成功提高可加工性。

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