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5d电子结合能和电子-声子耦合对LiY(BO)中Ce发光的影响

Impacts of 5d electron binding energy and electron-phonon coupling on luminescence of Ce in LiY(BO).

作者信息

Ou Yiyi, Zhou Weijie, Hou Dejian, Brik Mikhail G, Dorenbos Pieter, Huang Yan, Liang Hongbin

机构信息

MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, KLGHEI of Environment and Energy Chemistry, School of Chemistry, Sun Yat-sen University Guangzhou 510275 China

School of Materials Science and Engineering, Hanshan Normal University Chaozhou 521041 China.

出版信息

RSC Adv. 2019 Mar 11;9(14):7908-7915. doi: 10.1039/c9ra00381a. eCollection 2019 Mar 6.

Abstract

In this work, the crystal structure and electronic structure as well as the synchrotron radiation vacuum ultraviolet-ultraviolet-visible (VUV-UV-vis) luminescence properties of LiY(BO) (LYBO):Ce phosphors were investigated in detail. The Rietveld refinement and DFT calculation reveal the 2/ monoclinic crystal phase and the direct band gap of the LYBO compound, respectively. Only one kind of Ce 4f-5d transition is resolved in terms of the low temperature VUV-UV excitation, UV-vis emission spectra and luminescence decay curves. Furthermore, by constructing the vacuum referred binding energy (VRBE) scheme and applying the frequency-degenerate vibrational model, the impacts of 5d electron binding energy and electron-phonon coupling on luminescence of Ce in LYBO are analysed. The results show that the Ce emission in LYBO possesses a moderate intrinsic thermal stability. With the increase in concentration, the thermal stability of the emission gets worse due to the possible thermally-activated concentration quenching. In addition, the simulation of Ce emission profile at low temperature reveals that the 4f-5d electronic transitions of Ce ions can be treated to couple with one frequency-degenerate vibrational mode having the effective phonon energy of ∼257 cm with the corresponding Huang-Rhys parameter of ∼6, which indicates a strong electron-phonon interaction of Ce luminescence in the LiY(BO) host. Finally, the X-ray excited luminescence spectrum of the LYBO:5%Ce phosphor is measured to check the potential scintillator applications.

摘要

在本工作中,详细研究了LiY(BO)(LYBO):Ce荧光粉的晶体结构、电子结构以及同步辐射真空紫外-紫外-可见光(VUV-UV-vis)发光特性。Rietveld精修和DFT计算分别揭示了LYBO化合物的单斜晶相和直接带隙。根据低温VUV-UV激发、UV-vis发射光谱和发光衰减曲线,仅分辨出一种Ce 4f-5d跃迁。此外,通过构建真空参考结合能(VRBE)方案并应用频率简并振动模型,分析了5d电子结合能和电子-声子耦合对LYBO中Ce发光的影响。结果表明,LYBO中的Ce发射具有适度的固有热稳定性。随着浓度的增加,由于可能的热激活浓度猝灭,发射的热稳定性变差。此外,低温下Ce发射轮廓的模拟表明,Ce离子的4f-5d电子跃迁可被视为与一种频率简并振动模式耦合,其有效声子能量约为257 cm,相应的黄-里斯参数约为6,这表明LiY(BO)基质中Ce发光具有较强的电子-声子相互作用。最后,测量了LYBO:5%Ce荧光粉的X射线激发发光光谱,以检查其潜在的闪烁体应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79a2/9061273/3f6fd291355b/c9ra00381a-f4.jpg

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