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Bendable Solar Cells from Stable, Flexible, and Transparent Conducting Electrodes Fabricated Using a Nitrogen-Doped Ultrathin Copper Film

机译:由使用氮掺杂超薄铜膜制造的稳定,柔性和透明导电电极制成的可弯曲太阳能电池

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摘要

Copper has attracted significant interests as an abundant and low-cost alternative material for flexible transparent conducting electrodes (FTCEs). However, Cu-based FTCEs still present unsolved technical issues, such as their inferior light transmittance and oxidation durability compared to conventional indium tin oxide (ITO) and silver metal electrodes. This study reports a novel technique for fabricating highly efficient FTCEs composed of a copper ultrathin film sandwiched between zinc oxides, with enhanced transparency and antioxidation performances. A completely continuous and smooth copper ultrathin film is fabricated by a simple room-temperature reactive sputtering process involving controlled nitrogen doping (<1%) due to a dramatic improvement in the wettability of copper on zinc oxide surfaces. The electrode based on the nitrogen-doped copper film exhibits an optimized average transmittance of 84% over a spectral range of 380-1000 nm and a sheet resistance lower than 20 Omega sq(-1), with no electrical degradation after exposure to strong oxidation conditions for 760 h. Remarkably, a flexible organic solar cell based on the present Cu-based FTCE achieves a power conversion efficiency of 7.1%, clearly exceeding that (6.6%) of solar cells utilizing the conventional ITO film, and this excellent performance is maintained even in almost completely bent configurations.
机译:作为柔性透明导电电极(FTCE)的一种丰富而低成本的替代材料,铜引起了广泛的兴趣。但是,铜基FTCE仍然存在尚未解决的技术问题,例如与常规的铟锡氧化物(ITO)和金属银电极相比,它们的透光率和氧化耐久性较差。这项研究报告了一种新型技术,该技术可制造由夹在氧化锌之间的铜超薄膜组成的高效FTCE,具有增强的透明性和抗氧化性能。通过简单的室温反应溅射工艺(包括可控的氮掺杂(<1%))可制备出完全连续且光滑的铜超薄膜,这是由于铜在氧化锌表面的润湿性得到了显着改善。基于氮掺杂铜膜的电极在380-1000 nm光谱范围内表现出84%的最佳平均透射率和低于20 Omega sq(-1)的薄层电阻,暴露于强氧化后不会电降解条件为760小时。值得注意的是,基于本发明的铜基FTCE的柔性有机太阳能电池实现了7.1%的功率转换效率,明显超过了使用传统ITO膜的太阳能电池的转换效率(6.6%),即使在几乎完全使用时也能保持这种出色的性能弯曲的配置。

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  • 来源
    《Advanced Functional Materials》 |2016年第23期|4180-4191|共12页
  • 作者单位

    Shandong Univ, Sch Mat Sci & Engn, Key Lab Liquid Solid Struct Evolut & Proc Mat, Jinan 250061, Peoples R China|Korea Inst Mat Sci, Surface Technol Div, Chang Won 641831, Gyeongnam, South Korea;

    Korea Univ, Dept Mat Sci & Engn, Seoul 136713, South Korea;

    Korea Basic Sci Inst, Daegu Ctr, Daegu 702701, South Korea;

    Korea Basic Sci Inst, Jeonju Ctr, Jeonju 561180, Jeonbuk, South Korea;

    Korea Inst Mat Sci, Surface Technol Div, Chang Won 641831, Gyeongnam, South Korea;

    Korea Inst Mat Sci, Surface Technol Div, Chang Won 641831, Gyeongnam, South Korea;

    Shandong Univ, Sch Mat Sci & Engn, Key Lab Liquid Solid Struct Evolut & Proc Mat, Jinan 250061, Peoples R China;

    Korea Inst Mat Sci, Commercializat Res Div, Chang Won 641831, Gyeongnam, South Korea;

    Korea Univ, Dept Mat Sci & Engn, Seoul 136713, South Korea;

    Korea Inst Mat Sci, Surface Technol Div, Chang Won 641831, Gyeongnam, South Korea;

    Korea Inst Mat Sci, Surface Technol Div, Chang Won 641831, Gyeongnam, South Korea;

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