声子
材料科学
重组
散射
光电子学
化学物理
声子散射
拉曼散射
分子物理学
凝聚态物理
光散射
电子迁移率
皮秒
作者
Tao Han,Jiayu Tan,Yuanyuan Huang,Y N Wu,Chunhui Lu,Guorong Xu,Qixiang Yin,Qiyi Zhao,Yixuan Zhou,X X Xu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-04-17
卷期号:26 (16): 5495-5503
标识
DOI:10.1021/acs.nanolett.6c00447
摘要
Unraveling the lattice vibration, carrier dynamics, and their influence on the carrier transport in 2D semiconductors is pivotal for advancing next-generation optoelectronic and optoacoustic devices. Herein, we investigate the spatiotemporal carrier dynamics and transport properties of ZnPS 3 nanosheets using transient absorption microscopy. Our measurements reveal the generation of coherent longitudinal acoustic phonons at 17.58 GHz during early stage dynamics, governed by the deformation potential mechanism. Additionally, we identify a Shockley–Read–Hall process on the nanosecond time scale in ZnPS 3 and demonstrate carrier transport with a limited mobility of 41.5 cm 2 /(V·s), which is much lower than the theoretical value (226.5 cm 2 /(V·s)). We attribute the lower mobility to the synergistic effects of strong electron–phonon coupling and defect-mediated scattering in ZnPS 3 . This work provides critical insights into the carrier dynamics and transport of ZnPS 3, guiding its optimization for future optoacoustic and optoelectronic device applications.
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