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High Performance Perovskite Hybrid Solar Cells with E-beam-Processed TiOx Electron Extraction Layer

机译:具有电子束处理的TiOx电子提取层的高性能钙钛矿混合太阳能电池

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Perovskite hybrid solar cells (pero-HSCs) have drawn great attention in the last 5 years. The efficiencies of pero-HSCs have been boosted from 3.8% to over 20%. However, one of the bottlenecks for commercialization of pero-HSCs is to make a high electrical conductive TiOx electron extraction layer (EEL). In this study, we report high performance pero-HSCs with TiOx EEL, where the TiOx EEL is fabricated by electron beam (e-beam) evaporation, which has been proved to be a well-developed manufacturing process. The resistance of the e-beam evaporated TiOx EEL is smaller than that of sol-gel processed TiOx EEL. Moreover, the dark current densities and interfacial charge carrier recombination of pero-HSCs incorporated with e-beam processed TiOx EEL is also smaller than that of pero-HSCs incorporated with sol-gel processed TiOx EEL. All these result in efficient pero-HSCs with high reproducibility. These results demonstrate that our method provides a simple and facile way to approach high performance pero-HSCs.
机译:钙钛矿混合太阳能电池(pero-HSC)在过去5年中引起了极大的关注。 pero-HSC的效率从3.8%提高到20%以上。然而,pero-HSC商业化的瓶颈之一是制造高导电性TiOx电子提取层(EEL)。在这项研究中,我们报告了采用TiOx EEL的高性能pero-HSC,其中TiOx EEL是通过电子束(e-beam)蒸发制造的,事实证明这是成熟的制造工艺。电子束蒸发的TiOx EEL的电阻小于溶胶-凝胶处理的TiOx EEL。此外,与电子束处理的TiOx EEL结合的pero-HSC的暗电流密度和界面电荷载流子重组也小于与溶胶-凝胶处理的TiOx EEL结合的pero-HSC的暗电流密度和界面电荷载流子复合。所有这些都导致了高效,高可重复性的pero-HSC。这些结果表明,我们的方法为处理高性能pero-HSC提供了一种简单而便捷的方法。

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