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Lead-Less Halide Perovskite Solar Cells

机译:脱脂卤化物钙钛矿太阳能电池

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The rise and commercialization of perovskite solar cells (PSCs) is hindered by the toxicity of lead present in the perovskites used as the solar light absorber. To counter this problem, lead (Pb) can be fully (lead-free) or partially (lead-less) replaced by diverse elements. The former compounds suffer from poor efficiency and poor stability, whereas the later appear more promising. Herein, a survey of the methods reported in the literature to reduce Pb content in PSCs to fabricate “lead-less” (also called “lead-deficient”) PSCs is offered. First, the comparison of Sn and Pb elements and the partial replacement of Pb by Sn are developed. Then, its substitution by either Ge, Sr, or other alkaline-earth-metals, transition metals, and elements from columns 12, 13, and 15 of the periodic table are detailed. The new families of perovskites based on the insertion of organic cations to replace lead and halogen units, namely the “lead-deficient” and “hollow” halide perovskites are then presented and discussed. Finally, atypical ways to reduce the toxicity of PSCs are presented: perovskite layer thickness reduction via optimization of photon collection, integration of photonic structures, and usage of recycled lead. The current achievements and the outlook of those strategies are presented and discussed.
机译:钙钛矿太阳能电池(PSC)的兴起和商业化受到作为太阳光吸收剂的钙钛矿中存在的铅的毒性。为了反击这个问题,铅(PB)可以完全(无铅)或部分(不铅)由不同的元素替换。前者的化合物患效率差,稳定性差,而后来似乎更有前景。在此,提供了对文献中报告的方法的调查,以减少PB在PSC中的PB含量以制造“铅”(也称为“铅缺陷”)PSC。首先,开发了SN和Pb元素的比较和SN通过SN的部分更换。然后,通过GE,Sr或其他碱土金属,过渡金属和来自周期表的柱12,13和15的元素的替代。基于插入有机阳离子以替代铅和卤素单元的钙钛矿新系列,即“缺乏缺陷”和“中空”卤化物钙酸盐,并讨论。最后,提出了降低PSCs毒性的非典型方法:通过优化光子收集,光子结构的整合,以及再循环铅的使用以及再循环引线的钙钛矿层厚度降低。提出并讨论了目前的成就和这些策略的前景。

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