Wu Haixia, Lin Zhenxu, Song Jie, Zhang Yi, Guo Yanqing, Zhang Wenxing, Huang Rui
School of Materials Science and Engineering, Hanshan Normal University, Chaozhou 521041, China.
Nanomaterials (Basel). 2023 Aug 6;13(15):2259. doi: 10.3390/nano13152259.
Zero-dimensional (0D) tin halide perovskites feature extraordinary properties, such as broadband emission, high photoluminescence quantum yield, and self-absorption-free characteristics. The innovation of synthesis approaches for high-quality 0D tin halide perovskites has facilitated the flourishing development of perovskite-based optoelectronic devices in recent years. However, discovering an effective strategy to further enhance their emission efficiency remains a considerable challenge. Herein, we report a unique strategy employing rapid heat treatment to attain efficient self-trapped exciton (STE) emission in CsSnBr zero-dimensional perovskite. Compared to the pristine CsSnBr, rapid thermal treatment (RTT) at 200 °C for a duration of 120 s results in an augmented STE emission with the photoluminescence (PL) quantum yield rising from an initial 50.1% to a substantial 64.7%. Temperature-dependent PL spectra analysis, Raman spectra, and PL decay traces reveal that the PL improvement is attributed to the appropriate electron-phonon coupling as well as the increased binding energies of STEs induced by the RTT. Our findings open up a new avenue for efficient luminescent 0D tin-halide perovskites toward the development of efficient optoelectronic devices based on 0D perovskites.
零维(0D)锡卤化物钙钛矿具有非凡的特性,如宽带发射、高光致发光量子产率和无自吸收特性。近年来,高质量0D锡卤化物钙钛矿合成方法的创新推动了基于钙钛矿的光电器件蓬勃发展。然而,找到进一步提高其发射效率的有效策略仍然是一项巨大挑战。在此,我们报告了一种独特策略,即采用快速热处理在CsSnBr零维钙钛矿中实现高效自陷激子(STE)发射。与原始CsSnBr相比,在200°C下进行120秒的快速热处理(RTT)可使STE发射增强,光致发光(PL)量子产率从最初的50.1%大幅提高到64.7%。温度依赖的PL光谱分析、拉曼光谱和PL衰减曲线表明,PL的改善归因于适当的电子-声子耦合以及RTT诱导的STE结合能增加。我们的研究结果为高效发光的0D锡卤化物钙钛矿开辟了一条新途径,以推动基于0D钙钛矿的高效光电器件的发展。