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Organic solar cells on Al electroded opaque substrates: Assessing the need of ZnO as electron transport layer

机译:铝电极不透明基板上的有机太阳能电池:评估是否需要ZnO作为电子传输层

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Interfacial buffer layers such as electron and hole transporting layers are crucial in maximizing power conversion efficiencies of organic solar cell (OSC) devices. In this manuscript, we studied the role of solution processed ZnO as electron transport layer in devices with Aluminum (Al) cathode on opaque substrates in inverted device configuration where Al and Gold (Au) are used as cathode and anode, ZnO and MoO3 are used as electron and hole transport layers respectively whilst P3HT:PC(60)B3M is used as active layer (ActL). The results show that a thin layer of Aluminum Oxide (Al2O3) present on thermally evaporated Al cathode acts as an electron transport layer (ETL) when ZnO is absent, with surface states present on Al2O3 layer aiding the electron transport to cathode. The presence of ZnO as ETL between Al and active layer leads to a decrease in the efficiency of solar cell from 2.9% to 1.9%, attributed to the trapping of electrons at Al/ZnO interface due to unfavourable band alignment created by the presence of composite Al2O3/ZnO layer, implying that an additional ETL is not required when Al is used as a bottom electrode and could be an added advantage due to reduced processing steps.
机译:界面缓冲层(例如电子和空穴传输层)对于最大化有机太阳能电池(OSC)器件的功率转换效率至关重要。在本手稿中,我们研究了溶液处理的ZnO在不透明基板上具有铝(Al)阴极的器件中电子传输层的作用,该器件以不透明的衬底配置,其中Al和Gold(Au)用作阴极和阳极,使用ZnO和MoO3 P3HT:PC(60)B3M用作有源层(ActL),分别用作电子和空穴传输层。结果表明,当缺少ZnO时,存在于热蒸发的Al阴极上的氧化铝薄层(Al2O3)充当电子传输层(ETL),Al2O3层上存在的表面态有助于电子传输至阴极。 ZnO作为ETL在Al和活性层之间的存在导致太阳能电池的效率从2.9%降低到1.9%,这归因于由于存在复合物而导致的不利的能带对准,电子在Al / ZnO界面处被俘获Al2O3 / ZnO层,这意味着当将Al用作底部电极时不需要附加的ETL,由于减少了处理步骤,这可能是附加的优势。

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