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Enhanced photoluminescence in Tm~(3+) , Yb~(3+) , Mg~(2+) tri-doped ZnWO_4 phosphor: Three photon upconversion, laser induced optical heating and temperature sensing

机译:三掺杂ZnWO_4荧光粉中Tm〜(3 +),Yb〜(3 +),Mg〜(2+)的增强光致发光:三光子上转换,激光诱导的光学加热和温度感应

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摘要

Three photon upconversion photoluminescence has been observed in Tm3+, Yb3+co-doped ZnWO4phosphor synthesized through solid state reaction method. The structural measurements reveal an increase in crystallinity and particles size on Mg2+incorporation. The EDS spectrum shows the presence of Zn, W, Tm, Yb, Mg and O elements in the phosphor. The UV–vis-NIR absorption spectra contain CTB and 4f-4f transitions due to Tm3+and Yb3+ions, respectively. The Tm3+, Yb3+co-doped phosphor gives intense blue and NIR emissions alongwith a weak red emission due to1G4→3H6,3H4→3H6and1G4→3F4transitions, respectively upon 976 nm excitation. The emission intensity of the phosphor is found optimum at 2 mol% concentration of Yb3+ion. When the Mg2+ion is incorporated in the co-doped phosphor, the emission intensity enhances upto two times. This may be due to improved crystal structure and an increase in the intensity of absorption bands. The FIR analysis in the Stark components of1G4level suggests an efficient optical heating and temperature sensing ability. The temperature sensing sensitivity is found to be 34 × 10−4°K-1at 300°K. Thus, the Tm3+, Yb3+, Mg2+tri-doped ZnWO4phosphor may be used in photonic devices, NIR source, as an optical heater and temperature sensor purposes.
机译:固相反应法合成的Tm3 +,Yb3 +共掺杂ZnWO4荧光粉中观察到三光子上转换光致发光。结构测量结果表明,Mg2 +掺入会增加结晶度和粒径。 EDS光谱显示荧光粉中存在Zn,W,Tm,Yb,Mg和O元素。 UV-vis-NIR吸收光谱分别包含由于Tm3 +和Yb3 +离子引起的CTB和4f-4f跃迁。共掺杂Tm3 +,Yb3 +的磷光体在976 nm激发时,分别由1G4→3H6、3H4→3H6和1G4→3F4转变产生强烈的蓝色和NIR发射,以及弱的红色发射。发现磷光体的发射强度在Yb3 +离子浓度为2 mol%时最佳。当Mg2 +离子掺入到共掺杂的磷光体中时,发射强度提高了两倍。这可能是由于改善了晶体结构并增加了吸收带的强度。对1G4级Stark组件的FIR分析表明,它具有高效的光学加热和温度感应能力。发现在300°K时温度感测灵敏度为34×10-4°K-1。因此,Tm3 +,Yb3 +,Mg2 +三掺杂ZnWO4磷光体可用于光子器件,NIR源中,用作光学加热器和温度传感器。

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