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Photo-induced degradation and thermal decomposition in ZnSnF6 center dot 6H(2)O:Mn4+ red-emitting phosphor

机译:ZnSnF6中心点6H(2)O:Mn4 +发射红色荧光粉的光诱导降解和热分解

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摘要

ZnSnF6 center dot 6H(2)O:Mn4+ red-emitting hexahydrate phosphor is synthesized by the chemical reaction method, and its unique structural and optical properties are investigated using X-ray diffraction measurement, photoluminescence (PL) analysis, PL excitation spectroscopy, and electron spin resonance (ESR) spectroscopy. The Mn4+-activated phosphor exhibits remarkable degradation in the PL intensity under Xe lamp exposure and also by the coherent laser beam irradiation with the following order of degradation: Ar+ (488 nm) > He-Cd (325 nm) > He-Ne laser (632.8 nm). The mechanism of degradation is considered to be due to a change in the valence state of manganese ions from Mn4+ to Mn5+ by the photooxidation and/or disproportionation. The ESR measurement supports decreased Mn4+ spin density in the Xe-lamp exposed, degraded sample. The changes in the structural and PL properties are also observed after thermal annealing above similar to 100 degrees C and explained by the thermal-annealing-induced dehydration/decomposition of the host material. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过化学反应方法合成了ZnSnF6中心点6H(2)O:Mn4 +发射红色六水合物荧光粉,并使用X射线衍射测量,光致发光(PL)分析,PL激发光谱和X射线衍射研究了其独特的结构和光学性质。电子自旋共振(ESR)光谱。 Mn4 +活化的磷光体在Xe灯曝光下以及通过相干激光束辐照按下列降解顺序表现出PL强度显着降低:Ar +(488 nm)> He-Cd(325 nm)> He-Ne激光( 632.8 nm)。降解机理被认为是由于光氧化和/或歧化导致锰离子的价态从Mn4 +变为Mn5 +。 ESR测量支持Xe灯暴露的降解样品中Mn4 +自旋密度的降低。在高于约100℃的热退火之后,也观察到结构和PL性质的变化,并通过热退火引起的主体材料的脱水/分解来解释。 (C)2015 Elsevier B.V.保留所有权利。

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