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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Raman scattering and photoluminescence investigation of YBO3:Eu3+ under high temperature and high pressure
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Raman scattering and photoluminescence investigation of YBO3:Eu3+ under high temperature and high pressure

机译:YBO3:Eu3 +在高温高压下的拉曼散射和光致发光研究

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摘要

Raman scattering, X-ray diffraction and photoluminescence spectra of YBO3:Eu3+ are measured at high temperatures up to 1323 K. Results show that a temperature-induced phase transition from the LT to the HT phase starts at about 1273 K, then the HT phase transforms into the LT phase on cooling to 873 K. A theoretical model based on a luminescent dynamic process describes the temperature-dependent emission intensity well. In this model, the contributions from thermal activation, phonon-assisted absorption, and nonradiative energy transfer are analyzed in detail. In addition, we report the structure and optical behavior of YBO3:Eu3+ under high pressure by means of Raman scattering and photoluminescence measurements. When pressure is increased from zero to 25 GPa, Raman and photoluminescence measurements show that the structure of YBO3:Eu3+ remains stable and no pressure-driven phase transition occurs throughout the entire pressure range of these experiments. In addition, the mode-Gruneisen parameters and thermal expansion coefficient are calculated.
机译:在高达1323 K的高温下测量了YBO3:Eu3 +的拉曼散射,X射线衍射和光致发光光谱。结果表明,温度引起的从LT相到HT相的相变始于大约1273 K,然后是HT相在冷却至873 K时转变为LT相。基于发光动态过程的理论模型很好地描述了随温度变化的发射强度。在此模型中,详细分析了热活化,声子辅助吸收和非辐射能量转移的作用。此外,我们通过拉曼散射和光致发光测量报告了YBO3:Eu3 +在高压下的结构和光学行为。当压力从零增加到25 GPa时,拉曼光谱和光致发光测量表明YBO3:Eu3 +的结构保持稳定,并且在这些实验的整个压力范围内均未发生压力驱动的相变。另外,还计算了模格鲁内森参数和热膨胀系数。

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