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零维杂化锑溴钙钛矿中具有可切换介电行为和显著光致发光变化的高温相变

High-Temperature Phase Transition with Switchable Dielectric Behavior and Significant Photoluminescence Changes in a Zero-Dimensional Hybrid SbBr Perovskite.

作者信息

Li Qiao-Lin, Zhao Meng, Hao Rong-Jie, Wei Jing, Wang Xi-Xi, Yang Chun, Zhao Man, Tan Yu-Hui, Tang Yun-Zhi

机构信息

School of Chemistry and Chemical Engineering, Jiangxi University of Technology, Ganzhou, Jiangxi Province 341000, China.

出版信息

Inorg Chem. 2024 Feb 19;63(7):3411-3417. doi: 10.1021/acs.inorgchem.3c04050. Epub 2024 Feb 4.

Abstract

In the past decade, metal halide materials have been favored by many researchers because of their excellent physical and chemical properties under thermal, electrical, and light stimuli, such as ferroelectricity, dielectric, nonlinearity, fluorescence, and semiconductors, greatly promoting their application in optoelectronic devices. In this study, we successfully constructed an unleaded organic-inorganic hybrid perovskite crystal: [Cl-CH-(CH)NH]SbBr (), which underwent a high-temperature reversible phase transition near = 368 K. The phase transition behavior of was characterized by differential scanning calorimetry, accompanied by a thermal hysteresis of 6 K. In addition, variable-temperature Raman spectroscopy analysis and PXRD further verified the sensitivity of to temperature and the phase transition from low symmetry to high symmetry. Temperature-dependent dielectric testing shows that can be a sensitive switching dielectric constant switching material. Remarkably, exhibits strong photoluminescence emission with a wavelength of 478 nm and a narrow band gap of 2.7 eV in semiconductors. As the temperature increases and decreases, fluorescence undergoes significant changes, especially near , which further confirms the reversible phase transition of . All of these findings provide new avenues for designing and assembling new phase change materials with high and photoluminescence properties.

摘要

在过去十年中,金属卤化物材料因其在热、电和光刺激下具有优异的物理和化学性质,如铁电性、介电性、非线性、荧光和半导体特性,而受到许多研究人员的青睐,极大地推动了它们在光电器件中的应用。在本研究中,我们成功构建了一种无铅有机-无机杂化钙钛矿晶体:[Cl-CH-(CH)NH]SbBr(),其在约368 K附近经历高温可逆相变。通过差示扫描量热法对的相变行为进行了表征,伴随有6 K的热滞现象。此外,变温拉曼光谱分析和粉末X射线衍射进一步证实了对温度的敏感性以及从低对称性到高对称性的相变。温度依赖的介电测试表明可以成为一种敏感的开关介电常数切换材料。值得注意的是,在半导体中表现出波长为478 nm的强光致发光发射和2.7 eV的窄带隙。随着温度升高和降低,荧光会发生显著变化,特别是在附近,这进一步证实了的可逆相变。所有这些发现为设计和组装具有高和光致发光特性的新型相变材料提供了新途径。

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