Wang Zhen, Xie Jifan, Zheng Jiayu, Yan Yin, Tang Xiantong, Wang Yongjie, Zhou Xianju, Zhu Hongqiang, Pan Ruiheng, Dang Yangyang
School of Integrated Circuits, Chongqing University of Posts and Telecommunications, Chongqing 400065, China.
School of Electronic Science and Engineering, Chongqing University of Posts and Telecommunications, Chongqing 400065, China.
J Chem Phys. 2025 Aug 28;163(8). doi: 10.1063/5.0284865.
Three-dimensional lead halide perovskites (3D LHPs) exhibit giant Rashba spin-orbit coupling (SOC) due to their inherent lattice asymmetry and heavy-metal composition; yet, the impact of Rashba SOC on the luminescence dynamic of 3D LHPs remains debated. Here, we utilize the magneto-photoluminescence (Magneto-PL) effects as an effective tool to reveal the underlying spin-related opto-physical process in 3D LHPs. We find that the magneto-PL effects of 3D LHPs CH3NH3Pb(Br/I/IxCl1-x)3 thin films are negative and tunable at room temperature, indicating the remarkable suppression of their PL emission intensity by magnetic fields. Moreover, the largest magneto-PL magnitude of -3.60% is realized in CH3NH3PbIxCl3-x thin film at a magnetic field strength of ±1 T; oppositely, in CH3NH3PbI3 thin film, it is merely -0.75%. Combining magneto-optical spectroscopy and crystallographic analysis of 3D LHP thin films, we attribute this phenomenon to the interplay of the Rashba SOC-driven spin mixing and Zeeman splitting between dark singlet and bright triplet excitons, promoting spin conversion from dark excitonic states to bright states. In addition, we demonstrate that the Rashba SOC is tunable and has a direct relationship with the crystalline phase transition and grain size by modifying halide-components, which leads to the halide-components dependent magneto-PL effects in 3D LHP thin films. This work paves the way for improving the luminescence property of opto-spintronics materials via modulating Rashba SOC.
三维卤化铅钙钛矿(3D LHPs)由于其固有的晶格不对称性和重金属成分而表现出巨大的Rashba自旋轨道耦合(SOC);然而,Rashba SOC对3D LHPs发光动力学的影响仍存在争议。在此,我们利用磁光致发光(Magneto-PL)效应作为一种有效工具来揭示3D LHPs中潜在的自旋相关光物理过程。我们发现3D LHPs CH3NH3Pb(Br/I/IxCl1-x)3薄膜的磁光致发光效应在室温下是负的且可调谐的,这表明磁场对其PL发射强度有显著抑制作用。此外,在磁场强度为±1 T时,CH3NH3PbIxCl3-x薄膜实现了-3.60%的最大磁光致发光幅度;相反,在CH3NH3PbI3薄膜中,该幅度仅为-0.75%。结合3D LHP薄膜的磁光光谱和晶体学分析,我们将此现象归因于Rashba SOC驱动的自旋混合与暗单重态和亮三重态激子之间的塞曼分裂的相互作用,促进了自旋从暗激子态向亮态的转换。此外,我们证明通过改变卤化物成分,Rashba SOC是可调谐的,并且与晶相转变和晶粒尺寸有直接关系,这导致了3D LHP薄膜中依赖于卤化物成分的磁光致发光效应。这项工作为通过调制Rashba SOC来改善光自旋电子学材料的发光性能铺平了道路。