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Y(3+)、Gd(3+)和Lu(3+)共掺杂对单斜晶系Eu:LaVO4颗粒的相和发光性能的影响

Influence of Y(3+), Gd(3+), and Lu(3+) co-doping on the phase and luminescence properties of monoclinic Eu:LaVO4 particles.

作者信息

Van Deun Rik, D'hooge Micheline, Savic Aleksandar, Van Driessche Isabel, Van Hecke Kristof, Kaczmarek Anna M

机构信息

L3- Luminescent Lanthanide Lab, Department of Inorganic and Physical Chemistry, Ghent University, Krijgslaan 281-S3, B-9000 Ghent, Belgium.

出版信息

Dalton Trans. 2015 Nov 14;44(42):18418-26. doi: 10.1039/c5dt03147h. Epub 2015 Oct 5.

Abstract

Nano-sized particles of monoclinic-LaVO4 were prepared in a short reaction time of 30 minutes by employing a microwave assisted hydrothermal synthesis in the presence of glycerol, which was used both as a solvent and structure-directing agent. The tetragonal-LaVO4 is known to show strong luminescence properties when doped with Ln(3+), whereas the monoclinic-LaVO4 is usually considered not suitable for luminescence and therefore luminescence properties of monoclinic-LaVO4 doped with Ln(3+) ions are seldom investigated. Due to the scarce amount of research on the topic of luminescence of Ln(3+) doped monoclinic-LaVO4 in this paper a detailed study of solid state luminescence properties, including quantum yields, of nano-sized monoclinic-LaVO4 doped with different molar percentages of Eu(3+) is presented. It was observed that the 12.5%Eu(3+) doped sample showed the strongest luminescence properties. Additionally a study of the influence of different rare-earth ions (Y(3+), Gd(3+), Lu(3+)) co-doped into the particles was performed in order to explore the potential of increasing the luminescence of these materials. Furthermore stable colloidal suspensions of the Eu(3+) doped monoclinic-LaVO4 nanoparticles showing strong red emission could be obtained.

摘要

通过在甘油存在下采用微波辅助水热合成法,在短短30分钟的反应时间内制备出了单斜晶系的LaVO₄纳米颗粒,甘油在其中既作为溶剂又作为结构导向剂。已知四方晶系的LaVO₄在掺杂Ln(3+)时表现出强烈的发光特性,而单斜晶系的LaVO₄通常被认为不适合用于发光,因此很少研究掺杂Ln(3+)离子的单斜晶系LaVO₄的发光特性。由于关于掺杂Ln(3+)的单斜晶系LaVO₄发光主题的研究较少,本文对掺杂不同摩尔百分比Eu(3+)的纳米尺寸单斜晶系LaVO₄的固态发光特性(包括量子产率)进行了详细研究。观察到掺杂12.5%Eu(3+)的样品表现出最强的发光特性。此外,还研究了不同稀土离子(Y(3+)、Gd(3+)、Lu(3+))共掺杂到颗粒中的影响,以探索提高这些材料发光性能的潜力。此外,还可以获得显示出强烈红色发射的掺杂Eu(3+)的单斜晶系LaVO₄纳米颗粒的稳定胶体悬浮液。

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