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The Effects of Fluorine-Contained Molecules on Improving the Polymer Solar Cell by Curing the Anomalous S-Shaped I-V Curve

机译:含氟分子通过矫正异常的S形I-V曲线改善聚合物太阳能电池的作用

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In this study, we investigate the effects of fluorinated poly(3,4-ethylene dioxythiophene):poly(styrenesulfonate) buffer layer on the performance of polymer photovoltaic cells. We demonstrate for the first time, the deterioration of the device performance can be effectively mended by modifying the interface between the active layer and buffer layer with heptadecafluoro-1,1,2,2-tetra-hydro-decyl trimethoxysilane (PFDS) and perfluorononane. Device performance shows a substantial enhancement of short-circuit current from 7.90 to 9.39 mA/cm(2) and fill factor from 27% to 53%. The overall device efficiency was improved from 0.98% to 3.12% for PFDS modified device. The mechanism of S-shape curing is also discussed. In addition, the stability of modified devices shows significant improvement than those without modification. The efficiency of the modified devices retains about half (1.88%) of its initial efficiency (4.1%) after 30 d compared to the unmodified ones (0.61%), under air atmosphere.
机译:在这项研究中,我们研究了氟化聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)缓冲层对聚合物光伏电池性能的影响。我们首次证明,通过用七氟-1,1,2,2-四氢癸基三甲氧基硅烷(PFDS)和全氟壬烷修饰有源层和缓冲层之间的界面,可以有效地改善器件性能的下降。 。器件性能显示短路电流从7.90大幅提高到9.39 mA / cm(2),填充系数从27%增强到53%。对于PFDS修改的设备,整体设备效率从0.98%提高到3.12%。还讨论了S形固化的机理。另外,与没有修改的设备相比,修改的设备的稳定性显示出显着的提高。在空气中,经过修改的设备在30天后的效率保持了其初始效率(4.1%)的一半(1.88%),而未修改的设备(0.61%)保持不变。

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