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首页> 外文期刊>Optical Materials >High quantum efficiency far red emission from double perovskite structured CaLaMgMO_6:Mn~(4+) (M = Nb, Ta) phosphor for UV-based light emitting diodes application
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High quantum efficiency far red emission from double perovskite structured CaLaMgMO_6:Mn~(4+) (M = Nb, Ta) phosphor for UV-based light emitting diodes application

机译:双钙钛矿结构CaLaMgMO_6:Mn〜(4+)(M = Nb,Ta)荧光粉的高量子效率远红光发射,用于基于UV的发光二极管

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摘要

High quantum efficiencies CaLaMgM1-xO6:xMn(4+) (M = Nb, Ta; 0 < x <= 0.006) phosphors are prepared by a solid-state reaction method, and their crystal structure and luminescence property are investigated. The excitation spectra of CaLaMgM1-xO6:xMn(4+) revealed two excitation bands at 250-450 nm and 450-600 nm corresponding to (4)A(2) -> T-4(1) and (4)A(2) -> T-4(2) transition of Mn4+ ions respectively, and emission spectra cover from 650 to 800 nm with the strongest emission peak at 710 nm owing to the E-4 -> (4)A(2) transition of Mn4+ ions. The optimal Mn4+ doping concentrations for both of CaLaMgNbO6 and CaLaMgTaO6 host are determined to be 0.004 mol. The PL intensity and quantum efficiencies of the entitled phosphors excited under related UV light are investigated and compared with that of K2TiF6:Mn4+, Y2O3:Eu3+, CaAlSiN3:Eu2+ phosphors. Finally, a bright red LED was fabricated by using a 365 nm UV chip with the as-prepared CaLaMgNbO6:Mn4+ phosphor.
机译:通过固态反应方法制备了高量子效率的CaLaMgM1-xO6:xMn(4+)(M = Nb,Ta; 0 T-4(1)和(4)A( 2)-> Mn4 +离子的T-4(2)跃迁,由于E-4->(4)A(2)跃迁,发射光谱覆盖了650至800 nm,最强的发射峰在710 nm。 Mn4 +离子。 CaLaMgNbO6和CaLaMgTaO6主体的最佳Mn4 +掺杂浓度确定为0.004 mol。研究了在相关紫外光下激发的标题荧光粉的PL强度和量子效率,并将其与K2TiF6:Mn4 +,Y2O3:Eu3 +,CaAlSiN3:Eu2 +荧光粉的PL强度和量子效率进行了比较。最后,通过使用365 nm的UV芯片和已制备的CaLaMgNbO6:Mn4 +荧光粉来制造亮红色LED。

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