首页> 外文期刊>Journal of the European Ceramic Society >Upconverting luminescence based dual-modal temperature sensing for Yb~(3+)/Er~(3+)/Tm~(3+): YF3 nanocrystals embedded glass ceramic
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Upconverting luminescence based dual-modal temperature sensing for Yb~(3+)/Er~(3+)/Tm~(3+): YF3 nanocrystals embedded glass ceramic

机译:基于yb〜(3 +)/ ER〜(3 +)/ tm〜(3+):YF3纳米晶体嵌入式玻璃陶瓷的挤压发光

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摘要

Yb~(3+)/Er~(3+)/Tm~(3+) doped transparent glass ceramic containing orthorhombic YF_3 nanoparticles was successfully synthesized by a melt-quenching method. After glass crystallization, tremendously enhanced (about 5000 times) upconversion luminescence, obvious Start-splitting of emission bands as well as long upconversion lifetimes of Er~(3+)/Tm~(3+) confirmed the incorporation of lanthanide activators into precipitated YF_3 crystalline environment with low phonon energy. Furthermore, temperature-dependent upconversion luminescence behaviors of glass ceramic were systematically investigated to explore its possible application as optical thermometric medium. Impressively, both fluorescence intensity ratio of Er~(3+): ~2H_((11)/2) →~4I_((15)/2) transition to Er~(3+): ~4S_(3/2) →~4I_((15)/2) one and fluorescence intensity ratio of Tm~(3+): ~3F_(2.3) →~3HI_6 transition to the combined Tm~(3+): ~1G_4 →~3F_4/Er~(3+): ~4F_(9/2) →~4I_((15)/2) ones were demonstrated to be applicable as temperature probes, enabling dual-modal temperature sensing. Finally, the thermal effect induced by the irradiation of 980 nm laser was found to be negligible in the glass ceramic sample, being beneficial to gain intense and precise probing signal and detect temperature accurately.
机译:Yb〜(3 +)/ ER〜(3 +)/ Tm〜(3+)通过熔融淬火法成功地合成了含有邻苯甲酸的透明玻璃陶瓷的掺杂透明玻璃陶瓷。在玻璃结晶后,巨大增强(约5000次)上变频,发射带的明显起始分裂以及ER〜(3 +)/ Tm〜(3+)的长升级寿命证实将镧系元素活化剂的掺入沉淀为沉淀的YF_3具有低位能量的晶体环境。此外,系统地研究了玻璃陶瓷的温度依赖性上变化发光行为,以探讨其作为光学温度介质的可能施用。令人印象深刻地,ER〜(3+):〜2h _((11)/ 2)→〜4i _((15)/ 2)过渡到ER〜(3+):〜4S_(3/2)→ 〜4i _((15)/ 2)Tm〜(3+)的一种和荧光强度比:〜3f_(2.3)→〜3hi_6转换到组合Tm〜(3+):〜1g_4→〜3f_4 / er〜( 3+):〜4F_(9/2)→〜4i _((15)/ 2)被证明适用于温度探针,从而实现双模温度感测。最后,在玻璃陶瓷样品中发现由980nm激光照射引起的热效应可忽略不计,有利于获得强烈和精确的探测信号并准确地检测温度。

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