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Visibly-Transparent Organic Solar Cells on Flexible Substrates with All-Graphene Electrodes

机译:具有全石墨烯电极的柔性基板上可明亮的有机太阳能电池

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摘要

Portable electronic devices have become increasingly widespread. Because these devices cannot always be tethered to a central grid, powering them will require low-cost energy harvesting technologies. As a response to this anticipated demand, this study demonstrates transparent organic solar cells fabricated on flexible substrates, including plastic and paper, using graphene as both the anode and cathode. Optical transmittance of up to 69% at 550nm is achieved by combining the highly transparent graphene electrodes with organic polymers that primarily absorb in the near-IR and near-UV regimes. To address the challenge of transferring graphene onto organic layers as the top electrode, this study develops a room temperature dry-transfer technique using ethylene-vinyl-acetate as an adhesion-promoting interlayer. The power conversion efficiency achieved for flexible devices with graphene anode and cathode devices is 2.8%-3.8% at for optical transmittance of 54%-61% across the visible regime. These results demonstrate the versatility of graphene in optoelectronic applications and it is important step toward developing a practical power source for distributed wireless electrical systems.
机译:便携式电子设备越来越普遍普遍。因为这些设备不能总是被系在中心网格中,所以供电它们需要低成本的能量收集技术。作为对此预期需求的回应,本研究表明,在柔性基板上制造的透明有机太阳能电池,包括塑料和纸,与阳极和阴极都一样。通过将高度透明的石墨烯电极与主要吸收在接近IR和接近UV的方案中的有机聚合物的高透明石墨烯电极,实现高达69%的光学透射率高达69%。为了应对将石墨烯转移到有机层中作为顶部电极的挑战,该研究使用乙烯 - 乙酸乙烯酯作为粘合性互联层的室温干转移技术。对于具有石墨烯阳极和阴极器件的柔性器件实现的功率转换效率为2.8%-3.8%,在可见制度上的光透射率为54%-61%。这些结果表明了石墨烯在光电应用中的多功能性,并且对于开发用于分布式无线电气系统的实用电源是重要的步骤。

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