激子
钙钛矿(结构)
材料科学
散射
声子
光致发光
声子散射
单晶
凝聚态物理
卤化物
光电子学
物理
化学
光学
核磁共振
无机化学
结晶学
作者
Zhixuan Bi,Yunfei Bai,Ying Shi,Tao Sun,Heng Wu,Haochen Zhang,Yuhang Cui,Danlei Zhu,Yubin Wang,Miao‐Ling Lin,Yaxian Wang,Dongxin Ma,Ping‐Heng Tan,Sheng Meng,Qihua Xiong,Luyi Yang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-05-19
卷期号:19 (21): 19989-20000
被引量:5
标识
DOI:10.1021/acsnano.5c03274
摘要
Photogenerated carrier transport and recombination in metal halide perovskites are critical to device performance. Despite considerable efforts, sample quality issues and measurement techniques have limited the access to their intrinsic physics. Here, by utilizing high-purity CsPbBr3 single crystals and contact-free transient grating spectroscopy, we directly monitor exciton diffusive transport from 26 to 300 K. As the temperature (T) increases, the carrier mobility (μ) decreases rapidly below 100 K wtih a μ ∼ T–3.0 scaling, and then follows a more gradual μ ∼ T–1.7 trend at higher temperatures. First-principles calculations perfectly reproduce this experimental trend and reveal that optical phonon scattering governs carrier mobility shifts over the entire temperature range, with a single longitudinal optical mode dominating room-temperature transport. Time-resolved photoluminescence further identifies a substantial increase in exciton radiative lifetime with temperature, attributed to increased exciton population in momentum-dark states caused by phonon scattering. Our findings unambiguously resolve previous theory-experiment discrepancies, providing benchmarks for future optoelectronic design.
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