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Colloidal PbSe Solar Cells with Molybdenum Oxide Modified Graphene Anodes

机译:氧化钼修饰石墨烯阳极的胶体PbSe太阳能电池

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With good electrical conductivity, optical transparency, and mechanical compliance, graphene films have shown great potential in application for photovoltaic devices as electrodes. However, photovoltaic devices employing graphene anodes usually suffer from poor hole collection efficiency because of the mismatch of energy levels between the anode and light-harvesting layers. Here, a simple solution treatment and a low-cost solution-processed molybdenum oxide (MoOx) film were used to modify the work function of graphene and the interfacial morphology, respectively, yielding highly efficient hole transfer. As a result, the graphene/MoOx anodes demonstrated low surface roughness and high electrical conductivity. Using the graphene/MoOx anodes in PbSe nanocrystal solar cells, we achieved 1 sun power conversion efficiency of 3.56%. Compared to the control devices with indium tin oxide anodes, the graphene/MoOx-based devices show excellent performance, demonstrating the great potential of the graphene/MoOx anodes for use in optoelectronics.
机译:石墨烯膜具有良好的导电性,光学透明性和机械柔韧性,在将光伏器件用作电极方面显示出巨大潜力。然而,由于阳极层和光收集层之间的能级不匹配,采用石墨烯阳极的光伏器件通常具有差的空穴收集效率。在这里,通过简单的固溶处理和低成本的固溶氧化钼(MoOx)膜分别修饰了石墨烯的功函数和界面形态,从而实现了高效的空穴转移。结果,石墨烯/ MoOx阳极显示出低的表面粗糙度和高的导电性。在PbSe纳米晶体太阳能电池中使用石墨烯/ MoOx阳极,我们实现了3.56%的1太阳功率转换效率。与具有铟锡氧化物阳极的控制设备相比,基于石墨烯/ MoOx的设备显示出优异的性能,这证明了用于光电子学的石墨烯/ MoOx阳极的巨大潜力。

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