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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Luminescence property, energy transfer and thermal property of color tunable phosphor Ca9-wCe0.5Y0.5-x-y-z(PO4)(7):xTb(3+), yEu(3+), zSm(3+), wMn(2+)
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Luminescence property, energy transfer and thermal property of color tunable phosphor Ca9-wCe0.5Y0.5-x-y-z(PO4)(7):xTb(3+), yEu(3+), zSm(3+), wMn(2+)

机译:发光性质,能量转移和彩色可调荧光粉的热特性Ca9-WCE0.5Y0.5-XYZ(PO4)(7):XTB(3+),YEU(3+),ZSM(3+),WMN(2+ )

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摘要

Series of Ca9-wCe0.5Y0.5-x-y-z(PO4):xTb(3+), yEu(3+), zSm(3+), wMn(2+ )phosphors are synthesized by a high temperature solid state method. The spectral property and fluorescence decay curves are measured and used to demonstrate the energy transfer effect in Ce3+-Tb3+, Ce3+-Sm3+, Ce3+-Eu3+, Tb3+-Sm3+, Tb3+ Eu3+ and Tb3+-Mn2+. For Ca9Ce0.5Y0.5(PO4)(7), the concentration of Ce3+ is higher and it can act as activator and sensitizer simultaneously. Ce3+ and Tb3+ can emit blue and green light under near ultraviolet excitation, respectively. Sm 3 +, Eu 3 + and Mn 2 + can produce red emission. In order to generate white light, Ce3+/Tb3+/Sm3+, Ce3+/Tb3+/Eu3+ and Ce3+/Tb3+/Mn2+ doped phosphors are investigated, and Ca8.8Ce0.5Y0.33(PO4)(7):0.17Tb(3+),0.20Mn(2+) can create high quality white light. Its color rendering index can be high up to 80.2 and correlated color temperature is 4735 K, and its thermal stability is high. The result indicates that the acquired phosphors can be potential for the use of ultraviolet excited white light emitting diodes. (C) 2018 Elsevier B.V. All rights reserved.
机译:CA9-WCE0.5Y0.5-X-Y-Z(PO4)系列:XTB(3+),YEU(3+),ZSM(3+),WMN(2+)磷光体通过高温固态方法合成。测量光谱性和荧光衰减曲线并用于证明Ce3 + -Tb3 +,Ce3 + -sm3 +,Ce3 + -eu3 +,Tb3 + -Sm3 +,Tb3 + Eu3 +和Tb3 + -mn2 +中的能量转移效果。对于CA9CE0.5Y0.5(PO4)(7),CE3 +的浓度越高,它可以同时用作活化剂和敏化剂。 CE3 +和TB3 +分别可以分别发出蓝色和绿灯,分别在紫外激发附近。 SM 3 +,EU 3 +和Mn 2 +可以产生红色发射。为了产生白光,研究CE3 + / TB3 + / SM3 +,CE3 + / TB3 + / EU3 +和CE3 + / TB3 + / MN2 +掺杂磷光体,CA8.8CE0.5Y.33(PO4)(7):0.17TB(3+) ,0.20mn(2+)可以创造出高质量的白光。其显色指数可以高达80.2,并且相关的色温为4735 k,其热稳定性高。结果表明,所获得的磷光体可能是使用紫外线激发白光发光二极管的可能性。 (c)2018年elestvier b.v.保留所有权利。

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