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Wide-Range Thermometry at Micro/Nano Length Scales with In2O3 Octahedrons as Optical Probes

机译:以In2O3八面体为光学探针的微米/纳米尺度的宽量程测温

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摘要

We report the temperature-dependent photoluminescence and Raman spectra of In2O3 octahedrons synthesized by an evaporation condensation process. The luminescence obtained here is due to the defect-related deep level emission, which shows highly temperature-dependent behavior in 83-573 K range. Both the position as well as the intensity varies with temperature. Similarly, Raman spectroscopy in 83-303 K range shows temperature-dependent variation in peak intensity but no change in the peak position. Interestingly, the variation of intensity for different peaks is consistent with Placzek theory which invokes the possibility of temperature sensing. We demonstrate the reversibility of peak intensity with temperature for consecutive cycles and excellent stability of the octahedrons toward cryogenic temperature sensing. Overall, both the temperature-dependent photoluminescence and Raman spectra can be explored to determine temperature in the cryogenic range at microano length scales. As an example, we evaluate the temperature-dependent Raman spectra of WO3 that undergoes a phase transition around 210 K and temperature-dependent luminescence of Rhodamine 6G (Rh6G) where intensity varies with temperature.
机译:我们报告了通过蒸发冷凝过程合成的In2O3八面体的温度依赖性光致发光和拉曼光谱。此处获得的发光是由于缺陷相关的深能级发射所致,它在83-573 K范围内表现出高度的温度依赖性行为。位置和强度都随温度变化。同样,在83-303 K范围内的拉曼光谱显示峰强度随温度变化,但峰位置无变化。有趣的是,不同峰的强度变化与Placzek理论是一致的,后者提出了温度传感的可能性。我们证明了峰值强度与温度连续可逆的可逆性以及八面体对低温温度感测的出色稳定性。总体而言,可以探索与温度有关的光致发光光谱和拉曼光谱,以确定在微米/纳米长度尺度下低温范围内的温度。例如,我们评估了WO3随温度变化的拉曼光谱,该相随210 K左右发生相变,以及若丹明6G(Rh6G)的强度随温度变化的发光随温度变化。

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