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首页> 外文期刊>Autonomic neuroscience: basic & clinical >Optical thermometry based on upconversion emission of Yb3+/Er3+ codoped bismuth titanate microcrystals
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Optical thermometry based on upconversion emission of Yb3+/Er3+ codoped bismuth titanate microcrystals

机译:基于YB3 + / ER3 +编码铋钛酸盐微晶的上变频发射的光学温度测量

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摘要

Optical thermometry has drawn great attention due to its sensitive and noncontact properties. Herein, Yb3+/Er3+ codoped Bi4Ti3O12 phosphor microcrystals have been synthesized by solid phase reaction for optical temperature sensing. The phase, microscopic structure and morphology of the prepared sample have been studied by the Xray diffraction, transmission electron microscopy, etc. The process of upconversion emission has been researched with different environmental temperature and excitation power under 980 nm laser excitation. Meanwhile, the temperature sensing nature of the as-prepared microcrystals has been investigated based on the luminescence intensity ratio of two thermally coupled energy levels (Er3+:H-2(11/2), S-4(3/2)). The excitation laser power density is 3.95 mW/mm(2), and the absolute sensitivity reaches 0.0046 K-1. The result demonstrates potential of the Bi4Ti3O12:Yb3+/Er3+ microcrystals in making optical sensing device under low excitation power density.
机译:光学温度测量由于其敏感和非接触性质而引起了很大的关注。 这里,通过固相反应合成了YB3 + / ER3 +编码Bi4Ti3O12磷光体微晶,用于光学温度感测。 已经通过X射线衍射,透射电子显微镜等研究制备样品的相位,微观结构和形态。通过980nm激光激发的不同环境温度和激励功率研究了上变化的过程。 同时,基于两个热耦合能级的发光强度比(ER3 +:H-2(11/2),S-4(3/2))研究了由制备的微晶的温度传感性质。 激光激光功率密度为3.95mW / mm(2),绝对灵敏度达到0.0046 k-1。 结果表明,在低激发功率密度下制造光学传感装置的BI4TI3O12:YB3 + / ER3 +微晶的电位。

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