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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Improvement in power conversion efficiency and long-term lifetime of organic photovoltaic cells by using bathophenanthroline/molybdenum oxide as compound cathode buffer layer
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Improvement in power conversion efficiency and long-term lifetime of organic photovoltaic cells by using bathophenanthroline/molybdenum oxide as compound cathode buffer layer

机译:通过使用菲咯啉/氧化钼作为复合阴极缓冲层提高有机光伏电池的功率转换效率和长期寿命

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摘要

We demonstrate response and lifetime improvements for organic photovoltaic (OPV) by using organic bathophenanthroline (Bphen) and inorganic molybdenum oxide (MoO_3) as a compound cathode buffer layer (CBL). Not only power conversion efficiency (PCE) increases by 27% but also working and storage lifetimes extend at least 10 and 60 times respectively comparing with PV cell with 5 nm thick Bphen as CBL. The optimized PV structure is ITO/CuPc (20 nm)/C_(60) (40 nm)/Bphen (2 nm)/MoO_3 (5 nm)/Al and the CBL of the reference device is 5 nm Bphen without MoO_3 layer. The achievement of PV performance and lifetime improvement by introducing such a compound CBL is attributed to appropriate level alignment between C _(60), Bphen and MoO_3, and stable inorganic MoO_3 can prevent from superior oxygen and moisture diffusion into the C_(60) acceptor layer. The detailed working mechanism of the compound Bphen/MoO _3 CBL in the OPV cells is also argued.
机译:我们通过使用有机红菲咯啉(Bphen)和无机氧化钼(MoO_3)作为复合阴极缓冲层(CBL),证明了有机光伏(OPV)的响应和寿命改善。与以5 nm厚Bphen作为CBL的PV电池相比,不仅功率转换效率(PCE)提高了27%,而且工作和存储寿命分别延长了至少10倍和60倍。优化的PV结构为ITO / CuPc(20 nm)/ C_(60)(40 nm)/ Bphen(2 nm)/ MoO_3(5 nm)/ Al,参考器件的CBL为5 nm Bphen,无MoO_3层。通过引入这样的化合物CBL可以实现PV性能和提高寿命,这归因于C _(60),Bphen和MoO_3之间的适当能级对齐,并且稳定的无机MoO_3可以防止氧气和水分扩散到C_(60)受体中层。还讨论了化合物Bphen / MoO _3 CBL在OPV细胞中的详细工作机理。

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