Liu Hang, Liu Mingtai, Wang Kailin, Wang Bo, Jian Xiukai, Bai Guangyao, Zhang Yuhong
School of electrical and computer engineering, Jilin jianzhu university, Changchun 130118, China.
Dalton Trans. 2021 Sep 14;50(35):12107-12117. doi: 10.1039/d1dt01854j.
BaInO:Yb/Tm/RE (RE = Er, Ho) upconversion (UC) phosphors were synthesized the sol-gel method. Rietveld refinement based on XRD data proved that In ions were replaced by rare earth (RE) ions. Under 980 nm excitation, UC and optical temperature-sensing properties were investigated, and the results indicated that the samples demonstrated high UC emission efficiencies and bright emission visible to the naked eye. The luminescence intensity ratio (LIR) technology based on thermally and non-thermally coupled levels was applied to study the optical temperature-sensing properties of the RE-doped BaInO phosphors. For the BaInO:Yb/Tm/Er phosphor, the absolute sensitivity reached a maximum value of 0.1433 K at 473 K, which was based on the non-thermally coupled levels (non-TCLs) of G (blue luminescence at 480 nm of Tm ion) and H (green luminescence at 525 nm of Er ion). For the BaInO:Yb/Tm/Ho phosphor, the maximum absolute sensitivity was 0.2545 K, which came from the non-TCLs of H (infrared luminescence at 795 nm of Tm ion) and G (blue luminescence at 480 nm of Tm ion). BaInO:Yb/Tm/RE (RE = Er, Ho) samples were proven to have excellent optical temperature-sensing properties and could be applied to design optical thermometry.
采用溶胶 - 凝胶法合成了BaInO:Yb/Tm/RE(RE = Er,Ho)上转换(UC)荧光粉。基于XRD数据的Rietveld精修证明In离子被稀土(RE)离子取代。在980 nm激发下,研究了上转换和光学温度传感特性,结果表明样品具有高的上转换发射效率和肉眼可见的明亮发射。基于热耦合和非热耦合能级的发光强度比(LIR)技术被用于研究RE掺杂BaInO荧光粉的光学温度传感特性。对于BaInO:Yb/Tm/Er荧光粉,基于G(Tm离子在480 nm处的蓝色发光)和H(Er离子在525 nm处的绿色发光)的非热耦合能级(non-TCLs),在473 K时绝对灵敏度达到最大值0.1433 K。对于BaInO:Yb/Tm/Ho荧光粉,最大绝对灵敏度为0.2545 K,这来自于H(Tm离子在795 nm处的红外发光)和G(Tm离子在480 nm处的蓝色发光)的非热耦合能级。BaInO:Yb/Tm/RE(RE = Er,Ho)样品被证明具有优异的光学温度传感特性,可应用于光学测温设计。