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Methodologies toward Efficient and Stable Cesium Lead Halide Perovskite‐Based Solar Cells

机译:高效稳定的基于卤化钙铅钙钛矿的太阳能电池的方法学

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摘要

In an attempt to replace thermally vulnerable organic perovskites, considerable research effort has recently been focused on the development of all‐inorganic perovskites in the field of photovoltaics. The preceding studies demonstrated that cesium lead halide perovskites are promising candidates for thermally stable and efficient solar cell materials. Here, the recent progress in cesium lead halide perovskite‐based solar cells is summarized. Whether organic cations are essential for the superiority of halide perovskites is controversial. However, more than 13% efficient solar cells have been successfully fabricated by employing cesium lead halide perovskites in a short amount of time. The state‐of‐the‐art materials engineering techniques will help to achieve a remarkable photovoltaic performance comparable to that of organic perovskites. In addition, improved understanding of the intrinsic photophysical behaviors will provide new insights that will facilitate further improvements in solar cell applications.
机译:为了替代易受热影响的有机钙钛矿,近来大量的研究工作集中在光电领域中全无机钙钛矿的开发上。先前的研究表明,卤化铯铯钙钛矿是热稳定且高效的太阳能电池材料的有希望的候选者。在此,总结了卤化铯铅钙钛矿型太阳能电池的最新进展。有机阳离子是否对钙钛矿卤化物的优越性必不可少。然而,通过在短时间内使用卤化铯铅钙钛矿成功地制造了超过13%的高效太阳能电池。先进的材料工程技术将有助于实现与有机钙钛矿相当的出色光伏性能。此外,对内在光物理行为的更好理解将提供新见解,将有助于进一步改善太阳能电池应用。

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