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Ca(BO)F:1% Eu荧光粉中Eu的化学键参数、键能及局部晶体位点

Chemical bond parameters, bond energy and the local crystal sites of Eu in Ca(BO)F:1% Eu phosphor.

作者信息

Zhu Yuhan, Pan Yu, Wang Wenjun, Xu Haibing, Zhou Liqun, Liu Xiaoguang, Li Ling

机构信息

Hubei Collaborative Innovation Center for Advanced Organochemical Materials, Ministry-of-Education Key Laboratory for the Synthesis and Applications of Organic Functional Molecules, Hubei University Wuhan Hubei China

出版信息

RSC Adv. 2018 Sep 18;8(56):32325-32332. doi: 10.1039/c8ra06357e. eCollection 2018 Sep 12.

Abstract

The local crystal sites occupied by Eu in Ca(BO)F:1% Eu phosphor were investigated experimentally and theoretically. Ca(BO)F:1% Eu was synthesized by high-temperature solid-state method in air. The crystal structure and optical properties of the phosphor were studied by X-ray powder diffraction and photoluminescence, respectively. Two different O → Eu CT broad bands with the peaks at 266 and 283 nm in Ca(BO)F:1% Eu were detected, indicating the Eu sites occupied Ca2 and Ca1, respectively. The different sharp f-f emission spectra under the excitation of 283 and 266 nm proved that there are two different local lattice environments around Eu existing in Ca(BO)F:1% Eu. Environmental factor , the standard deviation of environmental factor (EFSD) and the bond energy were used to illustrate and explain the site occupancy mechanism of Eu into the host lattice. By comparing the intensity ratios of D → F transition to the D → F transition, (D/F)/(D/F) of Eu at Ca2 (7.381) was found to be 2.5 times stronger than that of Eu at Ca1 site (2.933). was calculated to analyze the (D/F)/(D/F) value. On the basis of the bond valence model, a bond-energy method was used to study the occupancy of the Eu ion, which indicated that the preferential sites of Eu ion occupancy in the Ca(BO)F are the Ca2 and Ca1 sites. All three theoretical calculation results are consistent with each other.

摘要

对Ca(BO)F:1% Eu荧光粉中Eu占据的局部晶体位点进行了实验和理论研究。采用高温固相法在空气中合成了Ca(BO)F:1% Eu。分别通过X射线粉末衍射和光致发光研究了该荧光粉的晶体结构和光学性质。在Ca(BO)F:1% Eu中检测到两个不同的O→Eu电荷转移宽带,其峰值分别位于266和283 nm,表明Eu位点分别占据Ca2和Ca1。在283和266 nm激发下不同的尖锐f-f发射光谱证明,Ca(BO)F:1% Eu中Eu周围存在两种不同的局部晶格环境。利用环境因子 、环境因子标准偏差(EFSD)和键能来说明和解释Eu进入基质晶格的位点占据机制。通过比较Eu在Ca2处(7.381)的D→F跃迁与D→F跃迁的强度比,发现其比Eu在Ca1位点处(2.933)的强度强2.5倍。计算 以分析(D/F)/(D/F)值。基于键价模型,采用键能方法研究了Eu离子的占据情况,结果表明Eu离子在Ca(BO)F中优先占据的位点是Ca2和Ca1位点。所有三个理论计算结果相互一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fca/9086229/c711a0232448/c8ra06357e-f1.jpg

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