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Enhancing Performance and Uniformity of Perovskite Solar Cells via a Solution-Processed C-70 Interlayer for Interface Engineering

机译:通过用于接口工程的解决方案加工的C-70中间层,增强钙钛矿太阳能电池的性能和均匀性

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摘要

Although some kinds of semiconductor metal oxides (SMOs) have been applied as electron selective layers (ESLs) for planar perovskite solar cells (PSCs), electron transfer is still limited by low electron mobility and defect film formation of SMO ESLs fabricated via low-temperature solution process. Herein, the C-70 interlayer between TiO2 and (HC(NH2)(2)Pbl3)(x)(CH(3)NH(3)PbCl3)(1-x) is prepared by spin-coating and low-temperature annealing for planar n-i-p PSCs. The resultant TiO2/C-70 ESL shows good surface morphology, efficient electron extraction, and facilitation of high-quality perovskite film formation, which can be attributed to the suitable nanosize and the superior electronic property of C-70 molecules. In comparison with pristine TiO2-based PSCs, the efficiency and hysteresis index are, respectively, enhanced 28% and reduced 76% by adding the C-70 interlayer between TiO2 and perovskite on the basis of statistical data of more than 50 cells. With the main advantages of low-temperature process and optimized interface, the champion efficiency of PSCs on flexible substrates could exceed 12% in contrast with the above 18% on rigid substrate.
机译:尽管已经用某些种类的半导体金属氧化物(SMOS)被应用为用于平面钙钛矿太阳能电池(PSC)的电子选择层(ESL),但是电子转移仍然受到低电子迁移率的限制,并且通过低温制造的SMO ESLS的缺陷膜形成限制解决方法。这里,通过旋涂和低温退火制备TiO 2和(HC(NH 2)(2)(2)pb13)(X)(CH(3)NH(3)PBCl3)(1-X)之间的C-70中间层适用于平面NIP PSC。所得TiO2 / C-70 ESL显示出良好的表面形态,高效的电子提取和高质量钙钛矿成膜的促进,其可归因于C-70分子的合适纳米型和优异的电子性能。与基于原始TiO 2的PSC相比,效率和滞后指数分别在基于大于50个细胞的统计数据的基础上加入TiO2和Perovskite之间的C-70中间层来增强28%并降低76%。随着低温工艺和优化界面的主要优点,PSC在柔性基材上的PSC冠军效率可能与刚性基板上的上述18%相比,柔性基材上的冠军效率可能超过12%。

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