首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Broadband near-infrared emission of La3Ga5GeO14:Tb3+,Cr(3+)phosphors: energy transfer, persistent luminescence and application in NIR light-emitting diodes
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Broadband near-infrared emission of La3Ga5GeO14:Tb3+,Cr(3+)phosphors: energy transfer, persistent luminescence and application in NIR light-emitting diodes

机译:La3Ga5GeO14的宽带近红外发射:Tb3 +,Cr(3+)荧光粉:能量转移,持续发光和在NIR发光二极管中的应用

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摘要

A La3Ga5GeO14:Tb3+,Cr(3+)near-infrared phosphor with high efficiency was prepared by a high-temperature solid-state method. The synthesized samples were analyzed by X-ray diffraction (XRD), diffuse reflectance spectroscopy, photoluminescence spectroscopy (PL&PLE), fluorescence decay curves and temperature dependent photoluminescence spectroscopy. Due to the highly efficient energy transfer from Tb(3+)to Cr(3+)ions, at an excitation wavelength of 373 nm, all La3Ga5GeO14:Tb3+,Cr(3+)samples show strong emission bands in the range of 400-1300 nm, and the optimal doping concentration is under the conditions ofx= 2.5 mol% andy= 1.4 mol%. In addition, the La2.975Ga4.986GeO14:0.025Tb(3+),0.014Cr(3+)phosphor showed excellent thermal stability, and the emission intensity at 423 K maintained 62% of the original value at 298 K. NIR pc-LED devices were prepared by combining a La2.975Ga4.986GeO14:0.025Tb(3+),0.014Cr(3+)phosphor with a 460 nm blue light emitting chip. Photoluminescence with a total output power of 3.018 mW could be achieved at a driving current of 160 mA, indicating the potential application in night vision lighting.
机译:通过高温固态方法制备具有高效率的La3Ga5GeO14:TB3 +,Cr(3+)近红外磷光体。通过X射线衍射(XRD),弥漫反射谱,光致发光光谱(PL&PLE),荧光衰减曲线和温度依赖性光致发光光谱分析合成样品。由于从TB(3+)至Cr(3+)离子的高效能量转移,在激发波长为373nm,所有La3ga5geo14:Tb3 +,Cr(3+)样品显示出400-的强发射带。 1300nm,最佳掺杂浓度在X = 2.5mol%Andy = 1.4mol%的条件下。此外,La2.975Ga4.986GeO14:0.025TB(3 +),0.014Cr(3+)磷光体显示出优异的热稳定性,423 k下的发射强度保持在298 K.Nir PC的原始值的62% - 通过将LA2.975GA4.986GeO14:0.025TB(3 +),0.014Cr(3+)荧光体组合,具有460nm蓝色发光芯片来制备LED器件。可以在160 mA的驱动电流下实现具有3.018 MW的总输出功率的光致发光,表明夜视照明中的潜在应用。

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