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The effect of rare-earth substitution on the Debye temperature of inorganic phosphors

机译:稀土取代对无机荧光粉德拜温度的影响

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摘要

In the quest to predict photoluminescent efficiency in rare-earth substituted inorganic phosphors, research has shown that materials consisting of ordered, rigid crystal structures tend to possess the highest photoluminescent quantum yields. A compound's Debye temperature (Theta(D)), which can be calculated using ab initio calculations, is an ideal proxy for quantitatively comparing structural rigidity among different inorganic compounds, allowing potentially efficient phosphors to be selected from large crystal structure databases. However, the high computational cost of these calculations limits estimating Theta(D) for unsubstituted host crystal structures only. It is assumed that the low substitution concentration of the rare-earth luminescent center does not significantly influence a material's Debye temperature. This work evaluates the validity of this approximation by examining the effect of luminescent center substitution on a host structure's Theta(D). Two well-known phosphors, (Y1-xCex)(3)Al5O12 (x = 0 - 0.05) and Ba1-delta Eu delta MgAl10O17 (delta = 0 - 0.15), were synthesized with varying rare-earth concentrations, while Theta(D) was computationally estimated and then determined by ultrasonic pulse-echo speed-of-sound and low-temperature heat capacity measurements. The ensuing results provide key implications for using Theta(D) as a proxy for structural rigidity in substituted inorganic compounds.
机译:为了预测稀土取代的无机磷光体的光致发光效率,研究表明,由有序的刚性晶体结构组成的材料往往具有最高的光致发光量子产率。化合物的德拜温度(Theta(D))可以使用从头算的方法进行计算,它是定量比较不同无机化合物之间结构刚度的理想替代方法,从而可以从大型晶体结构数据库中选择潜在有效的磷光体。然而,这些计算的高计算成本限制了仅针对未取代的主体晶体结构估算Theta(D)。假设稀土发光中心的低取代浓度不会显着影响材料的德拜温度。这项工作通过检查发光中心取代对主体结构的Theta(D)的影响,评估了这种近似的有效性。合成了两种著名的荧光粉(Y1-xCex)(3)Al5O12(x = 0-0.05)和Ba1-delta Eu delta MgAl10O17(delta = 0-0.15),它们具有不同的稀土浓度,而Theta(D通过计算来估算),然后通过超声脉冲回波声速和低温热容测量确定。随后的结果为使用Theta(D)替代取代的无机化合物中的结构刚度提供了关键意义。

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  • 来源
    《Applied Physics Letters》 |2020年第5期|051901.1-051901.5|共5页
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  • 作者单位

    Univ Houston Dept Chem Univ Pk Houston TX 77204 USA;

    Justus Liebig Univ Giessen Inst Phys Chem D-35392 Giessen Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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