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Influence of the presence of Ca in the cathode buffer layer on the performance and stability of organic photovoltaic cells using a branched sexithienylenevinylene oligomer as electron donor

机译:使用支化的六亚甲基亚乙烯基低聚物作为电子供体,阴极缓冲层中Ca的存在对有机光伏器件的性能和稳定性的影响

摘要

A new branched sexithienylene vinylene oligomer, (E)-bis-1,2-(5,5″-dimethyl-(2,2′:3′,2″-terthiophene)vinylene (BSTV), was synthesized, characterized, and used as the electron donor in a planar heterojunction organic photovoltaic cell (OPVC). The OPVC utilized fullerene (C60) as the electron acceptor, ITO-coated glass as the anode, and aluminum as the cathode. Hybrid electrode buffer layers of MoO3/CuI on the anode side and of Alq3/Ca on the cathode side were used. This shows the effectiveness of the bilayer Alq3/Ca as a cathode buffer layer. The thickness of the Ca layer and its effect on the performance and lifetime of the OPVCs were studied. It was found that an Alq3/Ca structure with 6 nm of Alq3 and 3 nm of Ca has an efficiency (η) of 2.28%, while a device without Ca has an efficiency of only 1.47%. Combining an optimized thickness of the new donor BSTV (22 nm) together with the bilayer cathode buffer layer, a device having an open-circuit voltage, Voc of 0.84 V, a short-circuit current, Jsc of 3.60 mA cm−2, and a fill factor, FF of 50% was achieved. However, the efficiency of the OPV with Ca decreases rapidly during the first hours of air exposure, resulting in device performance that is similar to a device fabricated without Ca. After this initial degradation, device performance for both types of OPV evolves similarly with continued air exposure.
机译:合成,表征和表征了一种新的支化的二噻吩亚乙烯亚乙烯基低聚物(E)-双-1,2-(5,5“-二甲基-(2,2':3',2”-对噻吩)亚乙烯基(BSTV),并用作平面异质结有机光伏电池(OPVC)的电子给体,OPVC以富勒烯(C60)为电子受体,ITO涂层玻璃为阳极,铝为阴极MoO3 / CuI混合电极缓冲层在阳极侧使用了Alq3 / Ca,在阴极侧使用了Alq3 / Ca,这表明双层Alq3 / Ca作为阴极缓冲层的有效性,Ca层的厚度及其对OPVC性能和寿命的影响为研究发现,Alq3 / Ca结构的Alq3的6 nm和Ca的3 nm的效率(η)为2.28%,而没有Ca的器件的效率仅为1.47%。新的供体BSTV(22 nm)和双层阴极缓冲层一起使用,该设备的开路电压Voc为0.84 V,短路rrent,Jsc为3.60 mA cm-2,填充系数FF为50%。但是,带有Ca的OPV的效率在空气暴露的最初几个小时内迅速降低,从而导致器件性能类似于不含Ca的器件。在这种最初的退化之后,两种类型的OPV的器件性能随着持续暴露在空气中而相似地发展。

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