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Plasmonically sensitized metal-oxide electron extraction layers for organic solar cells

机译:用于有机太阳能电池的等离敏化金属氧化物电子提取层

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摘要

ZnO and TiOx are commonly used as electron extraction layers (EELs) in organic solar cells (OSCs). A general phenomenon of OSCs incorporating these metal-oxides is the requirement to illuminate the devices with UV light in order to improve device characteristics. This may cause severe problems if UV to VIS down-conversion is applied or if the UV spectral range (λ < 400 nm) is blocked to achieve an improved device lifetime. In this work, silver nanoparticles (AgNP) are used to plasmonically sensitize metal-oxide based EELs in the vicinity (1–20 nm) of the metal-oxide/organic interface. We evidence that plasmonically sensitized metal-oxide layers facilitate electron extraction and afford well-behaved highly efficient OSCs, even without the typical requirement of UV exposure. It is shown that in the plasmonically sensitized metal-oxides the illumination with visible light lowers the WF due to desorption of previously ionosorbed oxygen, in analogy to the process found in neat metal oxides upon UV exposure, only. As underlying mechanism the transfer of hot holes from the metal to the oxide upon illumination with hν < Eg is verified. The general applicability of this concept to most common metal-oxides (e.g. TiOx and ZnO) in combination with different photoactive organic materials is demonstrated.
机译:ZnO和TiOx通常用作有机太阳能电池(OSC)中的电子提取层(EEL)。包含这些金属氧化物的OSC的普遍现象是需要用紫外线照射设备,以改善设备特性。如果应用了UV到VIS的降频转换,或者如果阻挡了UV光谱范围(λ<400 nm)以延长器件的使用寿命,则可能会导致严重的问题。在这项工作中,银纳米颗粒(AgNP)用于对金属氧化物/有机界面附近(1-20nm)的基于金属氧化物的EEL进行等离子体增感。我们证明,即使没有典型的紫外线照射要求,等离子体致敏的金属氧化物层也能促进电子提取并提供性能良好的高效OSC。结果表明,在等离子体敏化的金属氧化物中,可见光照射会由于先前离子吸附的氧气的解吸而降低WF,这与仅在紫外线下暴露于纯金属氧化物中的过程类似。作为基本机制,已验证了在hv

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