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Charge Photogeneration and Recombination in Fluorine-Substituted Polymer Solar Cells

机译:氟取代聚合物太阳能电池中的电荷光发生和复合

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摘要

In this contribution, we studied the effect of fluorine substitution on photogenerated charge generation, transport, and recombination in polymer solar cells. Two conjugated polymer materials, PBDTTT-E (fluorine free) and PTB7 (one fluorine substitution), were compared thoroughly. Meanwhile, various characterization techniques, including atomic force microscopy, steady-state spectroscopy, transient absorption spectroscopy, spectroelectrochemistry, and electrical measurements, were employed to analyse the correlation between molecular structure and device performance. The results showed that the influence of fluorine substitution on both the exciton binding energy of the polymer and the carrier recombination dynamics in the ultrafast timescale on the polymer was weak. However, we found that the fluorine substitution could enhance the exciton lifetime in neat polymer film, and it also could increase the mobility of photogenerated charge. Moreover, it was found that the SOMO energy level distribution of the donor in a PTB7:PC71BM solar cell could facilitate hole transport from the donor/acceptor interface to the inner of the donor phase, showing a better advantage than the PBDTTT-E:PC71BM solar cell. Therefore, fluorine substitution played a critical role for high-efficiency polymer solar cells.
机译:在这项贡献中,我们研究了氟取代对聚合物太阳能电池中光生电荷产生、传输和复合的影响。对两种共轭聚合物材料 PBDTTT-E (无氟) 和 PTB7 (一种氟取代) 进行了全面比较。同时,采用了各种表征技术,包括原子力显微镜、稳态光谱、瞬态吸收光谱、光谱电化学和电学测量,来分析分子结构与器件性能之间的相关性。结果表明,氟取代对聚合物激子结合能和聚合物超快时间尺度上载流子复合动力学的影响较弱。然而,我们发现氟取代可以提高纯聚合物薄膜中的激子寿命,并且还可以增加光生电荷的迁移率。此外,研究发现 PTB7:PC71BM 太阳能电池中供体的 SOMO 能级分布可以促进从供体/受体界面到供体相内部的空穴传输,显示出比 PBDTTT-E:PC71BM 太阳能电池更好的优势。因此,氟的取代在高效聚合物太阳能电池中起着至关重要的作用。

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