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Enhanced rare earth photoluminescence in inverse opal photonic crystals and its application for pH sensing

机译:反蛋白石光子晶体中的增强稀土光致发光及其在pH传感中的应用

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摘要

Concentration quenching effects of identical rare earth (RE) activator ions and energy transfer (ET) between different RE ions often compromise the photoluminescence (PL) quantum efficiency in RE based luminescence materials. Here, we demonstrate that in NaGd(WO4)(2):Tb3+, Eu3+ inverse opal photonic crystals (IOPCs), the suppression of the emission line located in the photonic stop band (PSB) and a dramatic increase of the lifetimes of Eu3+ and Tb3+ ions are observed. More interestingly, the concentration quenching among Eu3+ ions and ET from Tb3+ to Eu3+ is significantly relieved owing to the periodic empty cavity structure of IOPCs. As a consequence, the luminescent quantum efficiency (QE) of the NaGd(WO4)(2):Tb3+, Eu3+ IOPCs increases similar to 2 times more than that of crushed NaGd(WO4)(2):Tb3+, Eu3+ powder. In addition, a reusable pH sensor with good linear response (pH 5-10) has been designed based on the high surface-to-volume ratio, high connectivity, and enhanced luminescence of NaGd(WO4)(2):Tb3+, Eu3+ IOPCs, which could be applied to the dynamical detection of pH value.
机译:相同的稀土(RE)活化剂离子的浓度猝灭效应和不同RE离子之间的能量转移(ET)通常会损害基于RE的发光材料的光致发光(PL)量子效率。在这里,我们证明了在NaGd(WO4)(2):Tb3 +,Eu3 +反蛋白石光子晶体(IOPC)中,对位于光子阻带(PSB)中的发射谱线的抑制以及Eu3 +和Eu3 +的寿命显着增加。观察到Tb3 +离子。更有趣的是,由于IOPC的周期性空腔结构,大大减轻了Eu3 +离子和ET之间从Tb3 +到Eu3 +的浓度猝灭。结果,NaGd(WO4)(2):Tb3 +,Eu3 + IOPC的发光量子效率(QE)增加,比压碎的NaGd(WO4)(2):Tb3 +,Eu3 +粉末的发光量子效率提高2倍左右。此外,基于NaGd(WO4)(2):Tb3 +,Eu3 + IOPC的高表面积-体积比,高连接性和增强的发光性,设计了具有良好线性响应(pH 5-10)的可重复使用的pH传感器。可以应用于pH值的动态检测。

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