光致发光
拉曼光谱
单晶
材料科学
谱线
铅(地质)
结晶学
光电子学
化学
光学
物理
地质学
量子力学
地貌学
作者
Z. Zhou,Tao Li,Pingyuan Yan,Zhongqi Xie,Chengqiang Wang,Muyan Zhu,Heng Li,Chuanxiang Sheng
标识
DOI:10.1021/acs.jpclett.5c01755
摘要
Lead-free CsCu2I3 perovskites are promising luminescent materials with strong optical performance and environmental stability, but the fundamental origins of their emission polarization remain unclear, particularly whether the intrinsic polarization of self-trapped excitons (STEs) can be maintained. Here, we systematically present the photophysical properties of high-quality CsCu2I3 single crystals. Temperature-dependent photoluminescence reveals broadband emission from STEs with strong electron-phonon coupling (γLO ≈ 120 meV) and a negative thermal quenching behavior (activation energy of ∼77.5 meV) due to shallow trap states. Crucially, polarized photoluminescence experiments unambiguously demonstrate that the linear polarization (∼14.3% at 80 K) arises specifically from anisotropic absorption and not intrinsic STE emission polarization. Furthermore, angle-dependent Raman spectroscopy demonstrates strong anisotropy, evidenced by the intensity variation across different polarization directions, consistent with the anisotropic absorption behavior of the material. These findings clarify the photophysical origin of emission anisotropy in CsCu2I3 and highlight its potential for polarization-related optoelectronic applications.
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