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oe1(光电查) - 科学论文

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?? 中文(中国)
  • Roll-to-roll printed stable and thickness-independent ZnO:PEI composite electron transport layer for inverted organic solar cells

    摘要: Large-scale roll-to-roll (R2R) micro-gravure printing is one of the most e?ective fabrication techniques to achieve the commercialization of organic solar cells (OSCs). In the high-performance OSC devices, the electron transport layer (ETL) plays an important role. In this paper, a composite ink of ZnO and polyethylenimine (PEI) was developed to fabricate large-area ETL for the inverted OSCs through R2R micro-gravure printing. It was found that the modi?cation of ZnO nanoparticles by PEI e?ectively improved ink stability and enhanced the mechanical property. Using R2R micro-gravure printing, the thickness and coverage of the ZnO: PEI ?lms were well regulated through changing the printing roller speed and web speed. Consequently, a high-power conversion e?ciency around 6% was obtained for the ?exible PTB7-Th: PC71BM device with the thickness of R2R printed ZnO: PEI layer up to 120 nm, demonstrating the high printability of this ZnO: PEI composite material for the use in printed ?exible OSCs as the interface layer.

    关键词: Organic solar cells,Roll-to-roll printing,Thickness-independent,Long-term stability,ZnO: PEI composite materials

    更新于2025-09-16 10:30:52