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Analyzing Outdoor Degradation of Flexible PEDOT-Free P3HT; PCBM Organic Solar Cells Using Impedance Spectroscopy

机译:分析柔性无PEDOT P3HT的室外降解;使用阻抗谱的PCBM有机太阳能电池

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Flexible inverted organic solar cells (OSC) based on Poly(3-hexylthiophene-2, 5-diyl): [6], [6]-Phenyl C61 butyric acid methyl ester (P3HT: PCBM) have been manufactured and degraded using two different degradation protocols: six cells were kept in dark conditions, according to ISOS-D1 protocol, while other six were placed outdoor in a solar tracker, according to ISOS-O1 protocol. Pristine and degraded devices have been characterized in terms of I-V curves and Impedance Spectroscopy (IS). After two months, the efficiency drops from 2.83 % to 2.55 % for devices kept in dark conditions, and to 0.85 % for devices placed outdoor. Impedance spectra, measured before and after degradation have been fitted with an equivalent circuit that models recombination and diffusion processes. The evolution of the circuital parameters obtained from the IS fit show that devices degraded outside present i) a significant increase of the transport resistance, which hinders charge conduction, and ii) a decrease of majority carrier mobility, which is related to a loss of the blend crystallinity.
机译:基于聚(3-己基噻吩-2,5-二基):[6],[6]-苯基C61丁酸甲酯(P3HT:PCBM)的柔性倒置有机太阳能电池(OSC)已被制造并使用两种不同的方法降解降解协议:根据ISOS-D1协议,将六个电池置于黑暗条件下,而根据ISOS-O1协议,将其他六个电池放置在室外的太阳能跟踪器中。原始设备和降级设备已通过I-V曲线和阻抗谱(IS)进行了表征。两个月后,对于保持在黑暗条件下的设备,效率从2.83%降至2.55%,对于室外放置的设备,效率降至0.85%。在降解之前和之后测量的阻抗谱已装有模拟重组和扩散过程的等效电路。从IS拟合获得的电路参数的演变表明,存在以下性能时器件退化:i)传输电阻的显着增加,这会阻碍电荷传导,并且ii)大多数载流子迁移率的下降,这与晶体管的损耗有关。混合结晶度。

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