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Nanoperovskite doped with Yb~(3+) and Tm~(3+) ions used as an optical upconversion temperature sensor

机译:掺有Yb〜(3+)和Tm〜(3+)离子的纳米钙钛矿用作光学上转换温度传感器

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The temperature variation of the emission bands of the YAlO3:Yb3+/Tm3+ nanoperovskite has been analysed under 975 nm excitation to test its performance as a temperature sensor. The emission bands, originating from F-3(2,3) -> H-3(6) and H-3(4) -> H-3(6) transitions, are located at 700 and 800 nm respectively (first biological window of the human tissue), and were measured from room temperature until 470 K. The calibration of the optical sensor has been made by two different methods. In the first one, based on the fluorescence intensity ratio technique, the areas under the two emission bands were used. In the second procedure the ratio of the intensities at two different wavelengths is estimated. The results showed a higher sensitivity in the biophysical temperature range for the fluorescence intensity ratio method, while a better sensitivity was obtained with the second method for temperatures above 340 K. Once the calibration is made, it is possible to monitor the temperature of the nanoperovskite in the aforementioned range while the sample is heated with the laser.
机译:已在975 nm激发下分析了YAlO3:Yb3 + / Tm3 +纳米钙钛矿发射带的温度变化,以测试其作为温度传感器的性能。源自F-3(2,3)-> H-3(6)和H-3(4)-> H-3(6)跃迁的发射带分别位于700和800 nm(第一个生物人体组织的窗口),并从室温到470 K进行测量。光学传感器的校准已通过两种不同的方法进行。在第一个中,基于荧光强度比技术,使用了两个发射带下的面积。在第二个过程中,估算了两个不同波长下的强度比。结果表明,对于荧光强度比法,在生物物理温度范围内灵敏度更高,而对于高于340 K的温度,第二种方法获得的灵敏度更高。一旦进行校准,就有可能监测纳米钙钛矿的温度。在上述范围内,同时用激光加热样品。

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