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首页> 外文期刊>Chemistry: A European journal >An optical thermometer based on the delayed fluorescence of C-70
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An optical thermometer based on the delayed fluorescence of C-70

机译:基于C-70延迟荧光的光学温度计

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摘要

A sensitive and broad-ranged optical thermoraeter, based on the thermally activated delayed fluorescence of fullerene C-70, is presented. It consists of C-70 molecularly dispersed in a polymer film. Several polymer matrices were investigated. In the absence of oxygen the fluorescence intensity increases markedly with temperature. At 25 degrees C the fluorescence intensity of C-70 increases maximally by a factor of between 17 and 22, depending on the polymer, whereas at 100 degrees C the fluorescence intensity can be 79 times higher. In the absence of oxygen and for temperatures above 20 degrees C, the red fluorescence of C-70 in the films is so intense that it is easily perceived by the naked eye. For the systems studied, the fluorescence intensity is very sensitive to temperature. This results in a working range from -80 to at least 140 degrees C in the case of C-70 in poly(tert-butyl methacrylate) (PtBMA). Perylene was incorporated into the film as an internal reference in order to enable ratiometric measurements. The sensitivity of the lifetime of the delayed fluorescence to temperature is also high and results in an even wider working range. The performance of the C-70/PtBMA film was measured against a well-known optical temperature probe, [Ru(phen)(3)] (phen=phenanthroline). The results show that the C-70/PtBMA film is a very good system for optical temperature-sensing over a wide range of temperatures, outperforming known standards.
机译:提出了一种基于富勒烯C-70的热激活延迟荧光的灵敏且宽范围的光学热成像仪。它由C-70分子分散在聚合物膜中组成。研究了几种聚合物基质。在没有氧气的情况下,荧光强度随温度显着增加。在25摄氏度时,取决于聚合物,C-70的荧光强度最大增加了17到22之间,而在100摄氏度时,荧光强度可以高79倍。在没有氧气和温度高于20摄氏度的情况下,薄膜中C-70的红色荧光是如此强烈,以至于肉眼很容易察觉。对于所研究的系统,荧光强度对温度非常敏感。在聚甲基丙烯酸叔丁酯(PtBMA)中为C-70的情况下,这导致工作温度为-80至至少140℃。被掺入薄膜中作为内部参考,以便进行比率式测量。延迟荧光的寿命对温度的敏感性也很高,并导致更宽的工作范围。用众所周知的光学温度探针[Ru(phen)(3)](phen =菲咯啉)测量C-70 / PtBMA膜的性能。结果表明,C-70 / PtBMA膜是一种非常好的系统,可在很宽的温度范围内进行光学温度传感,性能优于已知标准。

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