首页> 外文期刊>Advanced energy materials >Vacuum-Assisted Growth of Low-Bandgap Thin Films (FA_(0.8)MA_(0.2)Sn_(0.5)Pb_(0.5)I_3) for All-Perovskite Tandem Solar Cells
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Vacuum-Assisted Growth of Low-Bandgap Thin Films (FA_(0.8)MA_(0.2)Sn_(0.5)Pb_(0.5)I_3) for All-Perovskite Tandem Solar Cells

机译:用于全钙钛矿串联太阳能电池的低带隙薄膜(FA_(0.8)MA_(0.2)Sn_(0.5)Pb_(0.5)I_3)的真空辅助生长

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摘要

All-perovskite multijunction photovoltaics, combining a wide-bandgap (WBG) perovskite top solar cell (E-G approximate to 1.6-1.8 eV) with a low-bandgap (LBG) perovskite bottom solar cell (E-G < 1.3 eV), promise power conversion efficiencies (PCEs) >33%. While the research on WBG perovskite solar cells has advanced rapidly over the past decade, LBG perovskite solar cells lack PCE as well as stability. In this work, vacuum-assisted growth control (VAGC) of solution-processed LBG perovskite thin films based on mixed Sn-Pb perovskite compositions is reported. The reported perovskite thin films processed by VAGC exhibit large columnar crystals. Compared to the well-established processing of LBG perovskites via antisolvent deposition, the VAGC approach results in a significantly enhanced charge-carrier lifetime. The improved optoelectronic characteristics enable high-performance LBG perovskite solar cells (1.27 eV) with PCEs up to 18.2% as well as very efficient four-terminal all-perovskite tandem solar cells with PCEs up to 23%. Moreover, VAGC leads to promising reproducibility and potential in the fabrication of larger active-area solar cells up to 1 cm(2).
机译:全钙钛矿多结光伏电池,结合了宽带隙(WBG)钙钛矿顶部太阳能电池(EG约1.6-1.8 eV)和低带隙(LBG)钙钛矿底部太阳能电池(EG <1.3 eV),保证了功率转换效率(PCE)> 33%。尽管在过去十年中,WBG钙钛矿太阳能电池的研究进展迅速,但LBG钙钛矿太阳能电池既缺乏PCE,又缺乏稳定性。在这项工作中,报道了基于混合Sn-Pb钙钛矿组合物的溶液加工LBG钙钛矿薄膜的真空辅助生长控制(VAGC)。 VAGC加工的钙钛矿薄膜显示出大的柱状晶体。与通过反溶剂沉积对LBG钙钛矿的成熟处理相比,VAGC方法可显着提高载流子寿命。改进的光电特性使PCE高达18.2%的高性能LBG钙钛矿太阳能电池以及PCE高达23%的高效四端全钙钛矿串联太阳能电池成为可能。此外,VAGC可以在制造高达1 cm(2)的较大的有源区域太阳能电池时带来可重复性和潜力。

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