甲脒
钙钛矿(结构)
微晶
卤化物
材料科学
扩散
化学物理
载流子寿命
结晶学
化学
光电子学
无机化学
硅
物理
热力学
作者
Ayan A. Zhumekenov,Makhsud I. Saidaminov,Md Azimul Haque,Erkki Alarousu,Smritakshi P. Sarmah,Banavoth Murali,İbrahim Dursun,Xiaohe Miao,Ahmed L. Abdelhady,Tom Wu,Omar F. Mohammed,Osman M. Bakr
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2016-04-19
卷期号:1 (1): 32-37
被引量:804
标识
DOI:10.1021/acsenergylett.6b00002
摘要
State-of-the-art perovskite solar cells with record efficiencies were achieved by replacing methylammonium (MA) with formamidinium (FA) in perovskite polycrystalline films. However, these films suffer from severe structural disorder and high density of traps; thus, the intrinsic properties of FA-based perovskites remain obscured. Here we report the detailed optical and electrical properties of FAPbX3 (where X = Br– and I–) single crystals. FAPbX3 crystals exhibited markedly enhanced transport compared not just to FAPbX3 polycrystalline films but also, surprisingly, to MAPbX3 single crystals. Particularly, FAPbBr3 crystals displayed a 5-fold longer carrier lifetime and 10-fold lower dark carrier concentration than those of MAPbBr3 single crystals. We report long carrier diffusion lengths—much longer than previously thought—of 6.6 μm for FAPbI3 and 19.0 μm for FAPbBr3 crystals, the latter being one of the longest reported values in perovskite materials. These findings are of great importance for future integrated applications of these perovskites.
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