首页> 外文期刊>ECS Journal of Solid State Science and Technology >Review-Temperature Dependence of Transition-Metal and Rare-Earth Ion Luminescence (Mn4+, Cr3+, Mn2+, Eu2+, Eu3+, Tb3+, etc.) II: Experimental Data Analyses
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Review-Temperature Dependence of Transition-Metal and Rare-Earth Ion Luminescence (Mn4+, Cr3+, Mn2+, Eu2+, Eu3+, Tb3+, etc.) II: Experimental Data Analyses

机译:综述-过渡金属和稀土离子发光(Mn4+、Cr3+、Mn2+、Eu2+、Eu3+、Tb3+等)的温度依赖性二、实验数据分析

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摘要

An analysis method presented in a separate article of I can be applicable not only to Mn4+ ion, but also to other kinds of ions like Mn4+, Cr3+, Mn2+, Eu2+, Eu3+, and Tb3+. Herein, the characteristic luminescence behaviors of such ion-activated phosphors are summarized from various spectroscopic points of view. The phosphors discussed in this article are classified into five groups: (i) transition-metal 3d (3)-activated phosphors of types F-Mn, O-Mn (Mn4+), and O-Cr-A (Cr3+), (ii) transition-metal 3d (3)-activated phosphors of types F-Cr and O-Cr-B (Cr3+), (iii) transition-metal 3d (5)-activated phosphors (Mn2+), (iv) divalent rare-earth ion-activated phosphors (Eu2+), and (v) trivalent rare-earth ion-activated phosphors (Eu3+, Tb3+). Particularly, the effects of the crystal field on the electronic energy-level scheme of these ions are demonstrated in graphical form with presenting their typical excitation absorption and luminescence spectra. The phosphor materials actually examined here are: (i) Rb2GeF6:Mn4+ and K2SiF6:Mn4+, (ii) RbIn(WO4)(2):Cr3+, (iii) Zn4B6O13:Mn2+, (iv) SrSi2O2N2:Eu2+, and (v) CaTiO3:Eu3+ and Ca3Ga2Ge3O12:Tb3+. The experimental photoluminescence intensity (I (PL)) vs T data for these phosphors are analyzed using our proposed model. An electron trap model has recently been proposed as an alternative model of ours to explain negative or zero thermal quenching phenomenon. Detailed discussion is also given on the reliability of this electron-trap model.
机译:I的另一篇文章中介绍的分析方法不仅适用于Mn4+离子,也适用于其他种类的离子,如Mn4+、Cr3+、Mn2+、Eu2+、Eu3+和Tb3+。本文从各种光谱角度总结了这种离子活化荧光粉的特征发光行为。本文讨论的荧光粉分为五组:(i) F-Mn、O-Mn (Mn4+) 和 O-Cr-A (Cr3+) 型过渡金属 3d (3) 活化荧光粉,(ii) F-Cr 和 O-Cr-B (Cr3+) 型过渡金属 3d (3) 活化荧光粉,(iii) 过渡金属 3d (5) 活化荧光粉 (Mn2+),(iv) 二价稀土离子活化荧光粉 (Eu2+),以及 (v) 三价稀土离子活化荧光粉 (Eu3+, TB3+)。特别是,晶体场对这些离子的电子能级方案的影响以图形形式显示,并展示了它们的典型激发吸收和发光光谱。这里实际研究的荧光粉材料有:(i) Rb2GeF6:Mn4+ 和 K2SiF6:Mn4+,(ii) RbIn(WO4)(2):Cr3+,(iii) Zn4B6O13:Mn2+,(iv) SrSi2O2N2:Eu2+,以及 (v) CaTiO3:Eu3+ 和 Ca3Ga2Ge3O12:Tb3+。使用我们提出的模型分析了这些荧光粉的实验光致发光强度(I(PL))与T数据。最近提出了一种电子阱模型作为我们的替代模型,用于解释负热淬灭现象或零热猝灭现象。还详细讨论了该电子阱模型的可靠性。

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