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Structural and Quantitative Investigation of Perovskite Pore Filling in Mesoporous Metal Oxides

机译:介孔金属氧化物中钙钛矿孔填充的结构与定量研究

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In recent years, hybrid organic–inorganic perovskite light absorbers have attracted much attention in the field of solar cells due to their optoelectronic characteristics that enable high power conversion efficiencies. Perovskite-based solar cells’ efficiency has increased dramatically from 3.8% to more than 20% in just a few years, making them a promising low-cost alternative for photovoltaic applications. The deposition of perovskite into a mesoporous metal oxide is an influential factor affecting solar cell performance. Full coverage and pore filling into the porous metal oxide are important issues in the fabrication of highly-efficient mesoporous perovskite solar cells. In this work, we carry out a structural and quantitative investigation of CH 3 NH 3 PbI 3 pore filling deposited via sequential two-step deposition into two different mesoporous metal oxides—TiO 2 and Al 2 O 3 . We avoid using a hole conductor in the perovskite solar cells studied in this work to eliminate undesirable end results. Filling oxide pores with perovskite was characterized by Energy Dispersive X-ray Spectroscopy (EDS) in Transmission Electron Microscopy (TEM) on cross-sectional focused ion beam (FIB) lamellae. Complete pore filling of CH 3 NH 3 PbI 3 perovskite into the metal oxide pores was observed down to X-depth, showing the presence of Pb and I inside the pores. The observations reported in this work are particularly important for mesoporous Al 2 O 3 perovskite solar cells, as pore filling is essential for the operation of this solar cell structure. This work presents structural and quantitative proof of complete pore filling into mesoporous perovskite-based solar cells, substantiating their high power conversion efficiency.
机译:近年来,有机-无机钙钛矿杂化光吸收剂因其具有可实现高功率转换效率的光电特性而备受太阳能电池领域的关注。在短短几年内,基于钙钛矿的太阳能电池的效率已从3.8%大幅提高到20%以上,使其成为光伏应用的有前途的低成本替代品。钙钛矿沉积到介孔金属氧化物中是影响太阳能电池性能的影响因素。在高效介孔钙钛矿太阳能电池的制造中,将多孔金属氧化物完全覆盖并填充孔是重要的问题。在这项工作中,我们对CH 3 NH 3 PbI 3孔填充进行了结构和定量研究,这些孔填充是通过连续两步沉积到两种不同的介孔金属氧化物TiO 2和Al 2 O 3中而沉积的。我们避免在这项工作中研究的钙钛矿太阳能电池中使用空穴导体来消除不良的最终结果。通过在截面聚焦离子束(FIB)薄片上的透射电子显微镜(TEM)中的能量色散X射线光谱法(EDS)对钙钛矿填充氧化物孔进行了表征。在X深度观察到CH 3 NH 3 PbI 3钙钛矿完全填充到金属氧化物孔中,表明孔中存在Pb和I。这项工作中报道的观察结果对于介孔Al 2 O 3钙钛矿型太阳能电池特别重要,因为孔填充对于该太阳能电池结构的运行至关重要。这项工作提供了结构和定量证明,可以完全填充介孔钙钛矿基太阳能电池,从而证实其高功率转换效率。

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