Tsai Min-Han, Chuang Chia-Hsiang, Lo Pei-Hsuan, Zeng Wei-Yun, Huang Chun-Yao, Yang Lan-Sheng, Chao Yu-Chiang
Department of Physics National Taiwan Normal University Taipei 116 Taiwan.
Small Sci. 2025 May 15;5(6):2500034. doi: 10.1002/smsc.202500034. eCollection 2025 Jun.
Chiral halide perovskites have attracted considerable attention due to their intrinsic chirality-induced circular dichroism (CD), circularly polarized luminescence (CPL), and spin selectivity. However, chiroptical activities of low-dimensional lead-free chiral halide perovskites are hardly observed, especially for those with white-light emission. Herein, lead-free halide perovskites with different ratios of 0D CsCuI and 1D CsCuI are realized. Chiroptical activities are introduced into these films by post-treatment with r-/s-methylbenzylammonium iodide to realize lead-free chiral halide perovskites. The absorption, photoluminescence, photoluminescence excitation, CD, and CPL spectra of these films are investigated. The Commission Internationale de L'Eclairage chromaticity coordinates (0.33, 0.33) are obtained when the excitation wavelength is 300 nm. Large Stokes shifts and broadband emission are observed and attributed to the presence of self-trapped excitons. At room temperature, intrinsic chirality-induced CD signals are observed without the application of an external magnetic field, indicating the presence of chirality in the low-dimensional lead-free chiral halide perovskites. Room-temperature CPL is also observed from the low-dimensional lead-free chiral halide perovskites, but only from the CsCuI component. This is attributed to the fact that CsCuI does not produce CPL and spin-polarized excitons do not transfer from CsCuI to CsCuI.
手性卤化物钙钛矿因其固有的手性诱导圆二色性(CD)、圆偏振发光(CPL)和自旋选择性而备受关注。然而,低维无铅手性卤化物钙钛矿的手性光学活性很难被观察到,尤其是那些具有白光发射的材料。在此,实现了具有不同比例的0D CsCuI和1D CsCuI的无铅卤化物钙钛矿。通过用r-/s-甲基苄基碘化铵进行后处理,将手性光学活性引入这些薄膜中,以实现无铅手性卤化物钙钛矿。研究了这些薄膜的吸收、光致发光、光致发光激发、CD和CPL光谱。当激发波长为300 nm时,获得了国际照明委员会色度坐标(0.33, 0.33)。观察到较大的斯托克斯位移和宽带发射,并归因于自陷激子的存在。在室温下,无需施加外部磁场即可观察到固有的手性诱导CD信号,这表明在低维无铅手性卤化物钙钛矿中存在手性。从低维无铅手性卤化物钙钛矿中也观察到了室温CPL,但仅来自CsCuI组分。这归因于CsCuI不产生CPL且自旋极化激子不会从CsCuI转移到CsCuI这一事实。