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首页> 外文期刊>Journal of Materials Science >Luminescence properties of double-perovskite Sr2Ca1-2x Eu (x) Na (x) MoO6 red-emitting phosphors prepared by the citric acid-assisted sol-gel method
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Luminescence properties of double-perovskite Sr2Ca1-2x Eu (x) Na (x) MoO6 red-emitting phosphors prepared by the citric acid-assisted sol-gel method

机译:柠檬酸辅助溶胶-凝胶法制备的双钙钛矿Sr2Ca1-2x Eu(x)Na(x)MoO6发射红色荧光粉

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摘要

Double-perovskite Sr2Ca1-2x Eu (x) Na (x) MoO6 red-emitting phosphors were prepared by the citric acid-assisted sol-gel method, and their luminescence properties were investigated as a function of sintering temperature and Eu3+-doping concentration. B-site substituted Sr2Ca0.8Eu0.1Na0.1MoO6 phosphor, in which Na+ ions act as charge compensators, was selected to study the thermal behavior, phase structure, microstructure, and photoluminescence property under different sintering temperatures. The photoluminescence studies on Sr2Ca1-2x Eu (x) Na (x) MoO6 (x = 0.02, 0.05, 0.10, 0.15, 0.2) show that a dominant red emission line at around 594 nm, which is due to the Eu3+ magnetic dipole transition of D-5(0)-F-7(1), is observed under different Eu3+ excitations (396 and 412 nm). Further, Eu3+ dopant content dependent emission spectra investigations of Sr2Ca1-2x Eu (x) Na (x) MoO6 phosphors indicates that, when the Eu3+ concentrations x = 0.05, there are minimum differences between the emission intensity of D-5(0)-F-7(1) transition at 594 nm and that of D-5(0)-F-7(2) transition at 615 nm. With increasing Eu3+ concentration, the variation of the emission intensities between the two transitions keep nearly invariable and Sr2Ca0.8Eu0.1Na0.1MoO6 phosphor has the strongest red emission in this series.
机译:采用柠檬酸辅助溶胶-凝胶法制备了双钙钛矿型Sr2Ca1-2x Eu(x)Na(x)MoO6发光红色荧光粉,并研究了其发光性能随烧结温度和Eu3 +掺杂浓度的变化。选择B位置取代的Sr2Ca0.8Eu0.1Na0.1MoO6荧光粉,其中Na +离子充当电荷补偿剂,以研究不同烧结温度下的热行为,相结构,微结构和光致发光性能。在Sr2Ca1-2x Eu(x)Na(x)MoO6(x = 0.02、0.05、0.10、0.15、0.2)上的光致发光研究表明,主要的红色发射线在594 nm附近,这是由于Eu3 +磁偶极跃迁引起的在不同的Eu3 +激发(396和412 nm)下观察到D-5(0)-F-7(1)的峰。此外,Sr2Ca1-2x Eu(x)Na(x)MoO6荧光粉的Eu3 +掺杂含量依赖性发射光谱研究表明,当Eu3 +浓度x = 0.05时,D-5(0)-的发射强度之间存在最小差异F-7(1)跃迁在594 nm处,而D-5(0)-F-7(2)跃迁在615 nm处。随着Eu3 +浓度的增加,两个跃迁之间的发射强度变化几乎保持不变,并且Sr2Ca0.8Eu0.1Na0.1MoO6荧光粉在该系列中具有最强的红色发射。

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