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首页> 外文期刊>Materials Chemistry Frontiers >Highly oriented two-dimensional formamidinium lead iodide perovskites with a small bandgap of 1.51 eV
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Highly oriented two-dimensional formamidinium lead iodide perovskites with a small bandgap of 1.51 eV

机译:高度面向二维formamidinium领先碘钙钛矿窄带隙1.51

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摘要

Due to the quantum confinement effects, the bandgap of two-dimensional (2D) perovskites increases when the thickness of the inorganic slabs decreases. This could result in insufficient light absorption that limits the overall performance of perovskite solar cells. Here we report a series of small bandgap 2D perovskites using mixed butylammonium (BA) and formamidinium (FA) cations, i.e. (BA)2(FA)n~(-1)PbnI3n+1 (n = 1-5). In particular, 2D perovskite (BA)2(FA)2Pb3I10 shows a small bandgap of 1.51 eV, which is comparable to state-of-the-art three-dimensional perovskites. A strongly preferential out-of-plane crys- tallographic alignment of the inorganic perovskite component in the (BA)2(FA)2Pb3I10 film is achieved by the addition of thiourea in the precursor. This significantly improves charge transport and thus leads to highly efficient inverted solar cells with a planar structure of ITO/PEDOT:PSS/(BA)2(FA)2Pb3I10/PC61BM/ BCP/Ag. With the best power conversion efficiency of 6.88%, we demonstrated the highest PCE reported for FA based low-n (n o 4) 2D perovskite solar cells. By virtue of the stable 2D perovskites, the unencapsulated device retains 80% efficiency after storing in air with a humidity of 25 - 5% for 25 days, indicating excellent stability against moisture and oxygen.
机译:由于量子限制效应,隙的二维(2 d)钙钛矿当无机的厚度增加板减少。光吸收不足,限制了钙钛矿的太阳能电池的整体性能。在这里,我们报告的一系列小隙2 d钙钛矿使用混合butylammonium (BA)formamidinium (FA)阳离子,即。(BA) 2 (FA) n ~ (1) PbnI3n + 1 (n = 1 - 5)。2 d钙钛矿(BA) 2 (FA) 2 pb3i10显示一个小隙1.51 eV,媲美最先进的三维钙钛矿。强烈优惠出平面克丽丝-无机的tallographic对齐中的钙钛矿组件(BA) 2 (FA) 2 pb3i10电影通过添加硫脲在吗前体。运输,从而导致高效倒与平面结构的太阳能电池最好的功率转换效率最高6.88%,我们证明了PCE报道基于FA低氮(n 4 o) 2 d钙钛矿的太阳能细胞。未密封的设备保留80%的效率后存储在空气中湿度的25 - 5%25天,表明优秀的稳定性对水分和氧气。

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