Characterization of YAG:Ce ceramics with graphene oxide

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
D. Deulina, V. Paygin, T. Alishin, S. Stepanov, D. Valiev, E. Dvilis, O. Khasanov, A. Ilela
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Abstract

Yttrium-aluminum garnet (Y3Al5O12) is an optical material that shows great potential due to its favorable light-emitting and mechanical properties, as well as its chemical stability and thermal resistance. It is commonly utilized in laser technology, optical instruments, and solid-state light sources as a result of its activation by transition metal or rare earth element ions. In this work, experiments were carried out on the procedure for compacting samples of luminescent ceramics Y3Al5O12:Ce3+, by single-base pressing followed by sintering. Comprehensive studies of the influence of graphene oxide of variable concentration (x=0.1;0.5; 1 wt.%) on the radiative characteristics of ceramic samples. It was found that the addition of graphene oxide in an amount from 0.1 to 1 wt. % affects the density and luminescent properties of YAG:Ce ceramics. There is a decrease in the value of the density parameter at concentrations of graphene oxide 0.1-1 wt. % before annealing, after annealing, the relative density value increases to ~99 %. The luminescence spectrum when excited by a blue LED chip appears as a wide band in the spectral range 460-750, the nature of which is associated with radiative transitions in the cerium ion. It has been established that the light-emitting characteristics have a downward trend when activated by graphene oxide. The integral luminescence intensity decreases from 27.1 % to 19 % with an increase in the concentration of graphene oxide.
氧化石墨烯YAG:Ce陶瓷的表征
钇铝石榴石(Y3Al5O12)具有良好的发光性能和机械性能,以及化学稳定性和耐热性,是一种具有巨大潜力的光学材料。由于其被过渡金属或稀土元素离子活化,通常用于激光技术、光学仪器和固态光源中。本文研究了Y3Al5O12:Ce3+发光陶瓷样品的单基压实-烧结工艺。不同浓度氧化石墨烯(x=0.1;0.5;1 wt.%)对陶瓷样品辐射特性的影响。结果表明,氧化石墨烯的加入量为0.1 ~ 1wt . %,会影响YAG:Ce陶瓷的密度和发光性能。在氧化石墨烯浓度为0.1-1 wt. %时,退火前的相对密度参数值减小,退火后的相对密度值增加到~ 99%。蓝光LED芯片激发后的发光光谱在460 ~ 750光谱范围内呈现宽频带,其性质与铈离子的辐射跃迁有关。研究表明,氧化石墨烯活化后,其发光特性呈下降趋势。随着氧化石墨烯浓度的增加,整体发光强度从27.1%下降到19%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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