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Synthesis, crystal structure and temperature dependent luminescence of Eu3+ doped SrGd2O4 host: An approach towards tunable red emissions for display applications

机译:Eu3 +掺杂SrGd2O4主体的合成,晶体结构和与温度有关的发光:一种用于显示器应用的可调红色发射的方法

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In the present paper, an investigation on the structural and photoluminescence (PL) properties of SrGd2O4:Eu3+ ceramic phosphors synthesized by homogeneous precipitation method followed by combustion process has been reported. The samples, annealed at 1200 degrees C, were crystallized into or-thorhombic phase without any impurities. Microscopic studies revealed the irregular morphology of the obtained ceramic phosphor particles having sizes in the range of 0.3-3 pm. The characteristic photoluminescence properties and decay curves were studied in detail as a function of Eu3+ concentration and temperature. The Eu3+ doped ceramic samples illuminated with UV light revealed the characteristic red luminescence corresponding to D-5(0)-> F-7(J) transitions of Eu3+. The concentration quenching phenomenon of Eu3+ ions in the present host, analyzed in the light of ion-ion interaction, indicated multipolar interaction between Eu3+ ions. Finally, the intensity parameters (Omega(2), Omega(4)) and various radiative properties such as stimulated emission cross-section (sigma(e)), gain band-width (sigma(e) x Delta lambda(eff)) and optical gain (sigma(e) x T-exp) of Eu3+ in the SrGd2O4 ceramic phosphors have been calculated by using Judd-Ofelt theory. The present phosphor system exhibited efficient red emission with high red color purity (95%) and adequate thermal stability even at 200 degrees C. Present research broadly indicated the suitability of SrGd2O4:Eu3+ ceramic phosphor for display applications. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:本文报道了通过均相沉淀法然后燃烧过程合成的SrGd2O4:Eu3 +陶瓷荧光粉的结构和光致发光(PL)性能的研究。在1200℃退火的样品结晶成正交晶相,没有任何杂质。显微镜研究表明,所获得的陶瓷磷光体颗粒具有不规则的形态,其尺寸在0.3-3μm的范围内。随Eu3 +浓度和温度的变化,详细研究了特征光致发光特性和衰减曲线。用紫外线照射的Eu3 +掺杂陶瓷样品显示出特征性的红色发光,对应于Eu3 +的D-5(0)-> F-7(J)跃迁。从离子-离子相互作用的角度分析了当前主体中Eu3 +离子的浓度猝灭现象,表明Eu3 +离子之间存在多极相互作用。最后,强度参数(Omega(2),Omega(4))和各种辐射特性,例如受激发射截面(sigma(e)),增益带宽(sigma(e)x Delta lambda(eff))利用Judd-Ofelt理论计算了SrGd2O4陶瓷荧光粉中Eu3 +的光学增益(sigma(e)x T-exp)。本荧光粉系统表现出有效的红色发射,具有很高的红色纯度(95%),甚至在200摄氏度下也具有足够的热稳定性。本研究广泛地表明SrGd2O4:Eu3 +陶瓷荧光粉适用于显示应用。 (C)2016 Elsevier Ltd和Techna Group S.r.l.版权所有。

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