甲脒
光致发光
合金
材料科学
三碘化物
锡
斯托克斯位移
激光线宽
量子产额
凝聚态物理
分析化学(期刊)
发光
结晶学
光电子学
光学
物理化学
化学
冶金
物理
钙钛矿(结构)
荧光
激光器
色素敏化染料
色谱法
电解质
电极
作者
S. D. Baranovskiǐ,Pauline Höhbusch,A. V. Nenashev,А. В. Двуреченский,Marina Gerhard,Dirk Hertel,Klaus Meerholz,Martín Koch,Florian Gebhard
标识
DOI:10.1002/adfm.202201309
摘要
Abstract Studying optoelectronic properties in FAPb 1− x Sn x I 3 and in FA 0.83 Cs 0.17 Pb 1− x Sn x I 3 perovskites as a function of the lead:tin content, Parrott et al. (2018) and Savill et al. (2020) observed the broadest luminescence linewidth and the largest Stokes shift in mixed compositions with Sn <25% and with >85%. It is in contrast to the intuitive expectation of the largest effects of alloy disorder for the 50:50 composition. This comment addresses the alloy disorder caused by statistical local spatial fluctuations of the alloy composition and shows that the largest effects of alloy disorder for perfectly random fluctuations in FAPb 1− x Sn x I 3 and FA 0.83 Cs 0.17 Pb 1− x Sn x I 3 are, in fact, expected for x < 0.25 and for x > 0.85. It can be one of the reasons why Pb‐rich and Sn‐rich Sn‐Pb perovskites typically show shorter photoluminescence (PL) lifetimes, broader emission, increased Stokes shifts, reduced PL quantum yield, and higher Urbach tails, compared with their lead‐only counterparts.
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