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Improvement of Charge Carrier Dynamics in P3HT:PC_(61)BM Based Solar Cell in Presence of Organic Cathode Interfacial Layers

机译:基于有机阴极界面层的P3HT:PC_(61)基于BM的太阳能电池的电荷载体动力学的改进

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Here, we incorporated different organic interfacial layers in P3HT:PC_(61)BM based solar cells, namely, Alq3, BPhen and BCP with Al cathode and there photovoltaic performances were investigated and compared with the conventional structure. It was observed that the device with ITO/PEDOT: PSS/P3HT:PC_(61)BM/BCP/Al configuration showing the best performance having PCE, η=4.5% with Jsc=12.67 mA/cm~2, Voc= 0.58 V and FF=62% compared to the other due to the better hole-blocking capacity of BCP/Al with the active layer. These results systematically explain the role and contribution of different organic interfacial layers to the PCE and the overall device performance of P3HT:PC_(61)BM based BHJ solar cell.
机译:这里,我们在P3HT:PC_(61)基于BM的太阳能电池中掺入了不同的有机界面层,即使用Al阴极的Alq3,Bphen和BCP,并研究了光伏性能并与常规结构进行了比较。观察到具有ITO / PEDOT的装置:PSS / P3HT:PC_(61)BM / BCP / AL配置,显示具有PCE的最佳性能,JSC = 12.67 mA / cm〜2,VOC = 0.58 V.由于BCP / Al与有源层的更好的孔阻断容量,FF = 62%相比。这些结果系统地解释了不同有机界面层对P3HT:PC_(61)基于BHJ太阳能电池的PCCE和整体装置性能的作用和贡献。

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