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中国物理学会期刊

反应等离子体沉积二氧化锡电子传输层及其在钙钛矿太阳电池中的应用

Electron transport layer of tin dioxide deposited by reactive plasma and its application in perovskite solar cells

CSTR: 32037.14.aps.72.20230693
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  • 电子传输层对于钙钛矿太阳电池的光电转换效率和稳定性十分重要, 二氧化锡是高效钙钛矿太阳电池中常见的电子传输层, 具有良好的载流子提取和传输能力, 但是基于溶液法制备二氧化锡在空气中高温退火时表面产生大量缺陷, 降低薄膜的电学性能, 而且溶液法不利于大面积制备. 本文采用反应等离子体沉积法制备二氧化锡薄膜, 通过调控辉光时间和工作电流优化薄膜性能, 将其应用于小面积正式钙钛矿太阳电池中, 实现了21.24%的效率. 另外, 通过引入异辛酸亚锡和二氧化锡结合作为双电子传输层改善器件的迟滞, 电池开路电压从1.11 V提高到1.15 V, 效率从21.27%提升至22.15%, 迟滞因子从24.04%降低到3.69%. 本工作开发了新的制备方法和有效的优化策略来制备二氧化锡电子传输层, 推动了平面异质结钙钛矿太阳电池的发展, 为制备高效、稳定的钙钛矿太阳电池提供了新的研究思路和方法.

     

    The electron transport layer is very important for the device efficiency and stability of perovskite solar cells. Tin dioxide is a common electron transport layer in high-efficiency solar cells and has good carrier extraction and transport capability. However, using the solution method to prepare tin dioxide, a large number of defects are generated on its surface during high-temperature annealing in air, which can degrade the electrical properties of the film, so the solution method is not conducive to preparing large-area film. In this paper, the reactive plasma deposition method is used to prepare tin dioxide thin film, and the performance of the thin film is optimized by adjusting the glow discharge time and working current. The film is applied to small-area N-I-P type perovskite solar cells, the efficiency reaching to 21.24%. The hysteresis of the device is improved by introducing stannous isooctanoate and tin dioxide as a double electron transport layer, the open circuit voltage of the solar cell increases from 1.11 to 1.15 V, the efficiency rises from 21.27% to 22.15%, and the hysteresis factor decreases from 24.04% to 3.69%. This work presents a new preparation method and effective optimization strategy to prepare tin dioxide electron transport layer, which will promote the development of planar heterojunction perovskite solar cells and provide a new research idea for preparing high-efficiency and stable perovskite solar cells.

     

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