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Structure and luminescence properties of Eu2+ doped LuxSr2-xSiNxO4-x phosphors evolved from chemical unit cosubstitution

机译:化学单元共取代形成的Eu2 +掺杂LuxSr2-xSiNxO4-x荧光粉的结构和发光性能

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The design scheme of the chemical unit cosubstitution of [Lu3+-N3-] for [Sr2+-O2-] in Sr2SiO4:Eu2+ has been put into practice to discover the new phosphor systems with tunable luminescence properties, and the structures and photoluminescence tuning of yellow-emitting LuxSr2-xSiNxO4-x:Eu2+ phosphors have been investigated. Crystal structures of LuxSr2-x-ySiNxO4-x:yEu(2+) samples were resolved using the Rietveld method, suggesting that the as-prepared Sr2SiO4 belonged to monoclinic symmetry (P2(1)) of beta-phase Sr2SiO4, while Sr1.97Eu0.03SiO4 and Sr1.965Eu0.03Lu0.005SiO3.995N0.005 belonged to orthorhombic symmetry (Pnma) of alpha-Sr2SiO4. The emission peaks of LuxSr1.97-xSiNxO4-x:0.03Eu(2+) phosphors were red-shifted from 563 to 583 nm upon increasing the [Lu3+-N3-] substitution content from x = 0 to x = 0.005, furthermore, the PL emission peaks of Lu0.005Sr1.965-ySiN0.005O3.995:yEu(2+) also showed a red-shift from 583 nm to 595 nm with increasing Eu2+ concentration (y = 0.03, 0.07, 0.10 and 0.15), and their corresponding red-shift mechanism has been discussed. The temperature dependent luminescence results further verified that the introduction of [Lu3+-N3-] for [Sr2+-O2-] in Sr2SiO4:Eu2+ can improve the thermal stability of the photoluminescence, which indicated that the LuxSr2-x-ySiNxO4-x:yEu(2+) phosphors have potential applications in white light-emitting diodes (wLEDs).
机译:已将Sr2SiO4:Eu2 +中[Sr2 + -O2-]的[Lu3 + -N3-]化学单元共取代的设计方案付诸实践,以发现具有可调发光特性的新型荧光粉体系,以及黄色的结构和光致发光调谐已经研究了发射发光的LuxSr2-xSiNxO4-x:Eu2 +荧光粉。使用Rietveld方法解析了LuxSr2-x-ySiNxO4-x:yEu(2+)样品的晶体结构,这表明制备的Sr2SiO4属于β相Sr2SiO4的单斜对称性(P2(1)/ n),而Sr1.97Eu0.03SiO4和Sr1.965Eu0.03Lu0.005SiO3.995N0.005属于α-Sr2SiO4的斜方对称(Pnma)。通过将[Lu3 + -N3-]取代含量从x = 0增加到x = 0.005,LuxSr1.97-xSiNxO4-x:0.03Eu(2+)荧光粉的发射峰从563 nm红移。随着Eu2 +浓度的增加,Lu0.005Sr1.965-ySiN0.005O3.995:yEu(2+)的PL发射峰也显示出从583 nm到595 nm的红移(y = 0.03、0.07、0.10和0.15),并讨论了其相应的红移机制。随温度变化的发光结果进一步证实,在Sr2SiO4:Eu2 +中引入[Sr2 + -O2-]的[Lu3 + -N3-]可以改善光致发光的热稳定性,这表明LuxSr2-x-ySiNxO4-x:yEu (2+)磷光体在白光发光二极管(wLED)中具有潜在的应用。

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