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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Thioacetamide additive assisted crystallization of solution-processed perovskite films for high performance planar heterojunction solar cells
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Thioacetamide additive assisted crystallization of solution-processed perovskite films for high performance planar heterojunction solar cells

机译:硫代酰胺添加剂辅助结晶溶液加工的钙钛矿薄膜,用于高性能平面杂交太阳能电池

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摘要

High quality perovskite films with uniform coverage and large grains are indispensable to enhance the performance of perovskite solar cells with high efficiency and stability. However, solution-processed perovskite films usually possess small grains associated with abundant grain boundaries, which induce high trap state density and then seriously degrade the device performance. In this paper, the volatile Lewis base, thioacetamide (TAA), is employed as an additive to fabricate high-quality methylammonium lead iodide (MAPbI(3)) films. The average grain size of perovskite films increases continuously with increasing TAA content and reaches a maximum value of 960 nm in the sample with 1.0% TAA. However, the average gain size drops dramatically to the value of samples without TAA when TAA content increases to 2.0%, and then the average gain size keeps nearly unchanged upon further increasing TAA content up to 10%. This unusual grain size variation tendency is attributed to the volatility of additive, and a mechanism is proposed based on various characterizations to illustrate how volatile TAA improves perovskite film crystallization. Furthermore, the device based on the MAPbI(3) film with 1.0% TAA shows a superior PCE of 18.9% and improved stability that the device with 1.0% TAA retains 88.9% of its initial performance after aging 816 h in the air with 25-35% relative humidity. The results strongly suggest that the TAA-modified MAPbI(3) films as absorber layers can significantly enhance the performance of the perovskite solar cell due to large grains, high crystallization and reduced trap state density of the high quality TAA-modified MAPbI(3) films.
机译:具有均匀覆盖和大晶粒的高质量钙钛矿薄膜是增强高效率和稳定性的Perovskite太阳能电池的性能不可或缺。然而,解决方案处理后的钙钛矿薄膜通常具有与丰富的晶界相关的小颗粒,其诱导高陷阱状态密度,然后严重降低设备性能。在本文中,使用挥发性的路易斯碱,硫代乙酰胺(TAA),其用作制造高质量的甲基铅碘化物(MAPBI(3))薄膜的添加剂。钙钛矿膜的平均晶粒尺寸随着TAA含量的增加而连续增加,并在样品中达到最大值为1.0%TAA的样品中的960nm。然而,当TAA含量增加到2.0%时,平均增益大小急剧下降到没有TAA的样品的值,然后平均增益尺寸在进一步增加TAA含量高达10%时几乎保持不变。这种异常的粒度变化趋势归因于添加剂的挥发性,并且基于各种特征提出了一种机制,以说明挥发性TAA如何改善钙钛矿膜结晶。此外,基于MAPBI(3)薄膜的装置,具有1.0%TAA的优越PCE为18.9%,并且在用25-816h在空气中老化816小时后,将10%TAA的初始性能的稳定性提高了88.9%。 35%的相对湿度。结果强烈表明,由于大颗粒,高质量的TAA改性MAPBI(3)的颗粒,高质量,捕获状态密度,TAA改性的MAPBI(3)薄膜可以显着提高钙钛矿太阳能电池的性能。电影。

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