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All-Inorganic CsPbX3 Perovskite Solar Cells: Progress and Prospects

机译:全无机CSPBX3 Perovskite太阳能电池:进度和前景

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摘要

Recently, lead halide-based perovskites have become one of the hottest topics in photovoltaic research because of their excellent optoelectronic properties. Among them, organic-inorganic hybrid perovskite solar cells (PSCs) have made very rapid progress with their power conversion efficiency (PCE) now at 23.7 %. However, the intrinsically unstable nature of these materials, particularly to moisture and heat, may be a problem for their long-term stability. Replacing the fragile organic group with more robust inorganic Cs+ cations forms the cesium lead halide system (CsPbX3, X is halide) as all-inorganic perovskites which are much more thermally stable and often more stable to other factors. From the first report in 2015 to now, the PCE of CsPbX3-based PSCs has abruptly increased from 2.9 % to 17.1 % with much enhanced stability. In this Review, we summarize the field up to now, propose solutions in terms of development bottlenecks, and attempt to boost further research in CsPbX3 PSCs.
机译:最近,由于它们出色的光电性能,铅卤化物的佩罗夫斯基特成为光伏研究中最热门的主题之一。 其中,有机无机杂交钙钛矿太阳能电池(PSC)在其电源转换效率(PCE)时率非常快速地进展23.7%。 然而,这些材料的本质上不稳定性质,特别是对水分和热量,可能是它们的长期稳定性的问题。 用更稳健的无机Cs +阳离子替换脆弱的有机基团形成铅卤化铯(Cspbx3,X是卤化物)作为全无机钙钛矿,这些钙钛矿更加热稳定,并且通常更稳定于其他因素。 从2015年的第一个报告到现在,基于CSPBX3的PSC的PCE从2.9%突然增加到17.1%,稳定性大。 在本次审查中,我们总结了现在的领域,提出了在开发瓶颈方面的解决方案,并试图在CSPBX3 PSC中提高进一步的研究。

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