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Dual valence Eu-doped phospho-alumino-silicate glass-ceramics containing Ba3AlO3PO4 nanocrystals for W-LEDs

机译:含Ba 3 AlO 3 PO 4 纳米晶的Eu掺杂双价磷铝硅酸盐玻璃陶瓷

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Novel dual valence Eu-doped phospho-alumino-silicate glass-ceramics containing orthorhombic Ba3AlO3PO4 nanocrystals were first fabricated by a traditional melt-quenching method and subsequent heat-treatment in an air atmosphere. Their structural and luminescent properties were systemically investigated by XRD, TEM analysis, and spectroscopic and fluorescence lifetime measurements. The incorporation of Eu3+ into Ba3AlO3PO4 crystallites and the reduction mechanism of Eu3+ to Eu2+ were also discussed based on the optical analyses. Simultaneously, perfect white light emission was obtained under 325 nm excitation. An improved anti-thermal quenching property was achieved resulting from the successful enrichment of Eu3+ and Eu2+ into Ba3AlO3PO4 crystallites, which was evidenced by active energy calculation. Our results indicate that these dual valence Eu-doped transparent Ba3AlO3PO4 glass-ceramics may have potential applications in W-LEDs.
机译:含正交晶Ba 3 AlO 3 PO 的新型双价Eu掺杂磷铝硅酸盐玻璃陶瓷small> 4 纳米晶体首先通过传统的熔融淬火方法制造,然后在空气中进行热处理。通过XRD,TEM分析以及光谱和荧光寿命测量系统地研究了它们的结构和发光特性。 Eu 3 + 掺入Ba 3 AlO 3 < / small> PO 4 微晶及Eu 3 + 还原为Eu 的机理在光学分析的基础上,还讨论了2 + 。同时,在325 nm激发下获得了完美的白光发射。 Eu 3 + 和Eu 2 + 的成功富集可提高抗淬火性能。放入Ba 3 AlO 3 PO 4 晶体,这由有功电能计算证明。我们的结果表明,这些双价Eu掺杂的透明Ba 3 AlO 3 PO 4 玻璃陶瓷在W-LED中可能具有潜在的应用。

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