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首页> 外文期刊>Advanced energy materials >p-Type CuI Islands on TiO2 Electron Transport Layer for a Highly Efficient Planar-Perovskite Solar Cell with Negligible Hysteresis
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p-Type CuI Islands on TiO2 Electron Transport Layer for a Highly Efficient Planar-Perovskite Solar Cell with Negligible Hysteresis

机译:TiO2电子传输层上的p型CuI孤岛,可实现具有低滞后性的高效平面钙钛矿太阳能电池

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摘要

Compact TiO2 is widely used as an electron transport material in planar-perov-skite solar cells. However, TiO2-based planar-perovskite solar cells exhibit low efficiencies due to intrinsic problems such as the unsuitable conduction band energy and low electron extraction ability of TiO2. Herein, the planar TiO2 electron transport layer (ETL) of perovskite solar cells is modified with ionic salt CuI via a simple one-step spin-coating process. The p-type nature of the CuI islands on the TiO2 surface leads to modification of the TiO2 band alignment, resulting in barrier-free contacts and increased open-circuit voltage. It is found that the polarity of the CuI-modified TiO2 surface can pull electrons to the interface between the perovskite and the TiO2, which improves electron extraction and reduces nonradiative recombination. The CuI solution concentration is varied to control the electron extraction of the modified TiO2 ETL, and the optimized device shows a high efficiency of 19.0%. In addition, the optimized device shows negligible hysteresis, which is believed to be due to the removal of trap sites and effective electron extraction by CuI-modified TiO2. These results demonstrate the hitherto unknown effect of p-type ionic salts on electron transport material.
机译:致密的TiO2被广泛用作平面-斜面-石英太阳能电池中的电子传输材料。然而,基于TiO 2的平面钙钛矿太阳能电池由于诸如TiO 2的不合适的导带能量和低的电子提取能力之类的固有问题而表现出低效率。本文中,钙钛矿型太阳能电池的平面TiO2电子传输层(ETL)通过简单的一步旋涂工艺用离子盐CuI进行了改性。 TiO2表面上的CuI岛的p型性质导致TiO2能带排列的改变,从而导致无障碍接触并增加了开路电压。发现CuI修饰的TiO 2表面的极性可以将电子拉至钙钛矿和TiO 2之间的界面,这改善了电子提取并减少了非辐射复合。通过改变CuI溶液的浓度来控制改性TiO2 ETL的电子萃取,优化后的器件显示出19.0%的高效率。此外,经过优化的器件显示出可忽略的滞后现象,这被认为是由于去除了捕获位点以及通过CuI修饰的TiO2进行的有效电子提取。这些结果证明了迄今未知的p型离子盐对电子传输材料的影响。

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