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A molecular thermometer based on the delayed fluorescence of C-70 dispersed in a polystyrene film

机译:基于分散在聚苯乙烯薄膜中的C-70的延迟荧光的分子温度计

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摘要

A new optical molecular thermometer, based on the thermally activated delayed fluorescence of C-70 dispersed in a polystyrene film, was developed. In the presence of oxygen, the fluorescence intensity of the C-70 film is essentially temperature independent in a wide range. In the absence of oxygen, however, the fluorescence intensity markedly increases with temperature. At room temperature (25 degrees C), and after degassing the sample, the fluorescence intensity of C-70 increases 22 times, while at 100 degrees C the fluorescence intensity is increased by 70 times. With our system, the very weak fluorescence of C-70 (Phi(F) congruent to 5 x 10(-4), in toluene) can be increased up to 91 times ( up to an estimated maximum value Phi(F) = 0.046). The estimate value of the singlet-triplet gap (29 kJ mol(-1)) and the fluorescence lifetime (0.63 ns) of the C-70 in film are in agreement with the values reported in the literature for C-70 in solution. The values of the phosphorescence lifetime at room temperature ( 23 ms) and the quantum yield of triplet formation ( 0.989) were also determined. The system is completely reversible with respect to heating-cooling cycles.
机译:基于分散在聚苯乙烯薄膜中的C-70的热活化延迟荧光,开发了一种新的光学分子温度计。在氧气存在下,C-70膜的荧光强度在很宽的范围内基本上与温度无关。然而,在没有氧气的情况下,荧光强度随温度显着增加。在室温(25摄氏度)下以及样品脱气后,C-70的荧光强度增加了22倍,而在100摄氏度下,荧光强度增加了70倍。使用我们的系统,C-70的非常弱的荧光(在甲苯中相当于5 x 10(-4)的Phi(F))可以增加多达91倍(高达估计的最大值Phi(F)= 0.046) )。膜中C-70的单重态-三重态间隙的估计值(29 kJ mol(-1))和荧光寿命(0.63 ns)与溶液中C-70的文献报道值一致。还测定了室温下的磷光寿命值(23 ms)和三重态形成的量子产率(0.989)。该系统在加热-冷却循环方面是完全可逆的。

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