首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Thermometric and optical heating bi-functional properties of upconversion phosphor Ba5Gd8Zn4O21:Yb3+/Tm3+
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Thermometric and optical heating bi-functional properties of upconversion phosphor Ba5Gd8Zn4O21:Yb3+/Tm3+

机译:上转换荧光粉Ba5Gd8Zn4O21:Yb3 + / Tm3 +的温度和光加热双功能性质

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摘要

Yb3+/Tm3+ co-doped Ba5Gd8Zn4O21 upconversion (UC) phosphors with thermometric and optical heating properties were successfully prepared by a sol-gel process, and crystal structures of all samples were examined by X-ray diffraction (XRD). The phosphors show an intense near-infrared (NIR) and several weak visible emission peaks upon 980 nm excitation. The possible UC mechanisms and processes were proposed based on the power dependence of the upconversion luminescence (UCL) intensities, and the lifetimes of (1)G(4) -> H-3(6) blue emissions were also measured to confirm the occurrence of energy transfer (ET). Temperature sensing performances based on the Stark levels ((1)G(4(1)), (1)G(4(2))) of Tm3+ were evaluated by analyzing temperature-dependent UCL spectra in the range 300-510 K. The maximum sensitivity for phosphors with different UCL intensities was discussed in detail and approached approximately 0.0061 K-1 at 300 K. Furthermore, the heating effect produced by laser excitation was also measured, which caused the temperature of sample to rise from 278.8 to 321.8 K upon increasing the pump power from 638 to 1802 mW. The results indicate that Yb3+/Tm3+ co-doped Ba5Gd8Zn4O21 phosphors could be considered as potential candidates for temperature sensors and optical heaters.
机译:通过溶胶-凝胶法成功制备了具有测温和光学加热特性的Yb3 + / Tm3 +共掺杂Ba5Gd8Zn4O21上转换(UC)荧光粉,并通过X射线衍射(XRD)检查了所有样品的晶体结构。荧光粉在980 nm激发后显示出很强的近红外(NIR)和几个弱的可见光发射峰。根据上转换发光(UCL)强度的功率依赖性,提出了可能的UC机制和过程,并测量了(1)G(4)-> H-3(6)蓝色发射的寿命,以确认发生了这种情况。能量转移(ET)。通过分析300-510 K范围内与温度有关的UCL光谱,评估了基于Tm3 +的Stark水平((1)G(4(1)),(1)G(4(2)))的温度传感性能。详细讨论了具有不同UCL强度的荧光粉的最大灵敏度,并在300 K下接近了0.0061 K-1。此外,还测量了激光激发产生的热效应,这使样品的温度从278.8 K升高到321.8 K将泵浦功率从638 mW增加到1802 mW。结果表明,Yb3 + / Tm3 +共掺杂的Ba5Gd8Zn4O21荧光粉可被视为温度传感器和光学加热器的潜在候选材料。

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