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首页> 外文期刊>Electron Devices Society, IEE >Inverted Polymer Solar Cells Using Inkjet Printed ZnO as Electron Transport Layer: Characterization and Degradation Study
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Inverted Polymer Solar Cells Using Inkjet Printed ZnO as Electron Transport Layer: Characterization and Degradation Study

机译:倒置聚合物太阳能电池使用喷墨印刷ZnO作为电子传输层:表征和降解研究

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摘要

In this work, stability and degradation of inverted organic solar cells (iOSCs) partially manufactured under air environment are analyzed. The degradation of iOSCs fabricated with inkjet printed ZnO and with spin coated PFN as electron transport layer (ETL) is compared. The PTB7 and PC70BM materials are used as donor and acceptor in the active layer, respectively, for all photovoltaic devices. During all the degradation study of the iOSCs, performance parameters such as open circuit voltage (VOC), short circuit current density (JSC), fill factor (FF) and Power conversion efficiency (PCE), are extracted from the current density – voltage measurements (JV) under dark and light conditions. The PCE of the unencapsulated iOSCs with PFN as ETL, left under N2, decreased to 80% after 58 h, while the same PCE reduction for iOSCs with inkjet printed ZnO as ETL, occurred after 189 h. Under air environment, the PCE of unencapsulated iOSCs fabricated with ZnO as ETL devices decreases to 80% after 160 h.
机译:在该工作中,分析了在空气环境下部分制造的倒置有机太阳能电池(IOSC)的稳定性和降解。比较用喷墨印刷的ZnO和用旋涂PFN制造的IOSC的降解作为电子传输层(ETL)。 PTB7和PC 70 对于所有光伏器件,分别在有源层中用作供体和受体的BM材料。在IOSC的所有劣化研究期间,诸如开路电压的性能参数(V oc ),短路电流密度(J sc ),填充因子(FF)和功率转换效率(PCE)从电流密度 - 电压测量中提取( j - v )在暗和光线下。用pfn作为ETL的未封装的IOSC的PCE,左下方 2 在58小时后降至80%,而ISC与喷墨印刷ZnO作为EtL的相同PCE降低,则发生在189小时后发生。在空气环境下,用ZnO制造的未封闭的IOSC的PCE作为ETL器件在160小时后降低至80%。

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