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Progress on lead-free metal halide perovskites for photovoltaic applications: a review

机译:光伏应用无铅金属卤化物钙钛矿的研究进展

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摘要

AbstractMetal halide perovskites have revolutionized the field of solution-processable photovoltaics. Within just a few years, the power conversion efficiencies of perovskite-based solar cells have been improved significantly to over 20%, which makes them now already comparably efficient to silicon-based photovoltaics. This breakthrough in solution-based photovoltaics, however, has the drawback that these high efficiencies can only be obtained with lead-based perovskites and this will arguably be a substantial hurdle for various applications of perovskite-based photovoltaics and their acceptance in society, even though the amounts of lead in the solar cells are low. This fact opened up a new research field on lead-free metal halide perovskites, which is currently remarkably vivid. We took this as incentive to review this emerging research field and discuss possible alternative elements to replace lead in metal halide perovskites and the properties of the corresponding perovskite materials based on recent theoretical and experimental studies. Up to now, tin-based perovskites turned out to be most promising in terms of power conversion efficiency; however, also the toxicity of these tin-based perovskites is argued. In the focus of the research community are other elements as well including germanium, copper, antimony, or bismuth, and the corresponding perovskite compounds are already showing promising properties.
机译:摘要金属卤化物钙钛矿彻底改变了可溶液加工光伏技术的领域。在短短几年内,基于钙钛矿的太阳能电池的功率转换效率已显着提高到20%以上,这使得它们现在已经与硅基光伏电池相比具有相当的效率。然而,基于溶液的光伏技术的这一突破具有一个缺点,即只有使用基于铅的钙钛矿才能获得这些高效率,并且即使对于钙钛矿型光伏技术的各种应用及其在社会上的接受度,这无疑将是一个巨大的障碍。太阳能电池中的铅含量很低。这一事实开启了无铅金属卤化物钙钛矿研究的新领域,目前这一研究非常活跃。基于最近的理论和实验研究,我们以此为动力来回顾这个新兴的研究领域,并讨论替代金属卤化物钙钛矿中铅的可能替代元素以及相应钙钛矿材料的性能。到目前为止,就功率转换效率而言,锡基钙钛矿被证明是最有前途的。然而,也有人认为这些锡基钙钛矿的毒性。在研究领域中,其他元素也包括锗,铜,锑或铋,相应的钙钛矿化合物已经显示出令人鼓舞的性能。

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