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Semi-Transparent Organic Photovoltaic Cells with Dielectric/Metal/Dielectric Top Electrode: Influence of the Metal on Their Performances

机译:具有介质/金属/介电顶电极的半透明有机光伏电池:金属对其性能的影响

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摘要

In order to grow semi-transparent organic photovoltaic cells (OPVs), multilayer dielectric/metal/dielectric (D/M/D) structures are used as a transparent top electrode in inverted OPVs. Two different electrodes are probed, MoO3/Ag/MoO3 and MoO3/Ag/Cu:Ag/ZnS. Both of them exhibit high transmission in visible and small sheet resistance. Semi-transparent inverted OPVs using these electrodes as the top anode are probed. The active organic layers consist in the SubPc/C60 couple. The dependence of the OPV performances on the top electrode was investigated. The results show that far better results are achieved when the top anode MoO3/Ag/MoO3 is used. The OPV efficiency obtained was only 20% smaller in comparison with the opaque OPV, but with a transparency of nearly 50% in a broad range of the visible light (400–600 nm). In the case of MoO3/Ag/Cu:Ag/ZnS top anode, the small efficiency obtained is due to the presence of some Cu diffusion in the MoO3 layer, which degrades the contact anode/organic material.
机译:为了生长半透明有机光伏电池(OPV),多层电介质/金属/电介质(D / M / D)结构用作倒出OPV中的透明顶电极。探测两个不同的电极,MOO3 / AG / MOO3和MOO3 / AG / CU:AG / ZnS。它们都以可见光和小薄层电阻表现出高透射。探测使用这些电极作为顶部阳极的半透明反转OPV。活性有机层在SubPC / C60夫妇中组成。研究了OPV性能对顶部电极的依赖性。结果表明,当使用顶部阳极MOO3 / AG / MOO3时,实现了更好的结果。与不透明OPV相比,获得的OPV效率仅为20%,但在宽范围的可见光(400-600nm)中透明度近50%。在Moo3 / Ag / Cu:Ag / ZnS顶部阳极的情况下,所获得的小效率是由于MOO3层中存在一些Cu扩散,这使得接触阳极/有机材料降低。

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