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Broadband conversion of ultraviolet to visible and near-infrared emission in Gd~(3 +)/Yb~(3 +) codoped germanate glass

机译:Gd〜(3 +)/ Yb〜(3 +)共掺杂德国锗玻璃中的紫外光宽带转换为可见光和近红外光

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摘要

Gd~(3 +)/Yb~(3 +) co-doped germanate glasses were fabricated using the melt-quenching method. Broadband visible emission was observed from the gadolinium doped germanate glasses under ultraviolet (UV) excitation, and white-light was obtained by modifying Yb~(3 +) co-dopant concentration. Through this co-doped system, the white-light emission can be further converted into the near-infrared range which is matched well with the energy band gap of commercial silicon solar cell. The possible energy transfer processes involved are proposed and discussed according to the excitation, emission and fluorescence decay measurements. The effect of Yb~(3 +) ion concentration with respect to fixed Gd~(3 +) ions on the visible and near-infrared (NIR) emission has also been studied. The conversion efficiency from visible to near-infrared is as high as 69.3% in the GZN: 0.2Gd _2O_3-0.6Yb_2O_3 sample. The results indicate that this material is potential in various applications, such as white LED, enhancing silicon solar cell efficiency, and so on.
机译:采用熔融淬火法制备了Gd〜(3 +)/ Yb〜(3 +)共掺杂锗酸盐玻璃。掺excitation锗酸盐玻璃在紫外(UV)激发下观察到宽带可见光发射,通过改变Yb〜(3 +)共掺杂剂浓度获得白光。通过这种共掺杂系统,可以将白光发射进一步转换为与商用硅太阳能电池的能带隙非常匹配的近红外范围。根据激发,发射和荧光衰减的测量结果,提出并讨论了可能的能量转移过程。还研究了Yb〜(3 +)离子浓度相对于固定Gd〜(3 +)离子对可见光和近红外(NIR)发射的影响。在GZN:0.2Gd _2O_3-3-0.6Yb_2O_3样品中,从可见光到近红外的转换效率高达69.3%。结果表明,这种材料在各种应用中具有潜力,例如白光LED,提高硅太阳能电池效率等。

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