钙钛矿(结构)
扩散
半导体
材料科学
化学物理
漫反射红外傅里叶变换
非谐性
薄膜
凝聚态物理
散射
光学
光电子学
化学
纳米技术
结晶学
物理
热力学
生物化学
光催化
催化作用
作者
Minjun Feng,Senyun Ye,Yuanyuan Guo,Tze Chien Sum
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-08-17
卷期号:22 (17): 7195-7202
被引量:12
标识
DOI:10.1021/acs.nanolett.2c02511
摘要
Carrier diffusion and surface recombination are key processes influencing the performance of conventional semiconductor devices. However, the interplay of photon recycling together with these processes in halide perovskites obfuscates our understanding. Herein, we discern these inherent processes in a thin FAPbBr3 perovskite single crystal (PSC) utilizing a unique transient reflectance technique that allows accurate diffusion modeling with clear boundary conditions. Temperature-dependent measurements reveal the coexistence of shallow and deep traps at the surface. The inverse quadratic dependence of temperature on carrier mobility μ suggests an underlying scattering mechanism arising from the anharmonic deformation of the PbBr6 cage. Our findings ascertain the fundamental limits of the intrinsic surface recombination velocity (S) and carrier diffusion coefficient (D) in PSC samples. Importantly, these insights will help resolve the ongoing debate and clarify the ambiguity surrounding the contributions of photon recycling and carrier diffusion in perovskite optoelectronics.
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