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Polysulfone as a scintillation material without doped fluorescent molecules

机译:聚砜作为闪烁材料,不含掺杂的荧光分子

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摘要

Scintillation materials made from un-doped aromatic ring polymers can be potentially used for radiation detection. Here we demonstrate that Polysulfone (PSU) works without doped fluorescent guest molecules, and thus broadens the choices available for radiation detection. The transparent PSU substrate (1.24 g/cm~3) significantly absorbs short-wavelength light below approximately 350 nm. Visible light absorption colours the substrate slightly yellow, and indigo blue fluorescence is emitted. The fluorescence maximum occurs at the intersection of the 340-nm excitation and 380-nm emission spectra; thus the emission is partially absorbed by the substrate. An effective refractive index of 1.70 is derived based on the wavelength dependence of the refractive indices and the emission spectrum. A peak caused by 976-keV internal-conversion electrons from a ~(207)Bi radioactive source appears in the light yield distribution. The light yield is equivalent to that of poly (phenyl sulfone), which has a similar structure. Overall, un-doped PSU could be a component substrate in polymer blends and be used as an educational tool in radiation detection.
机译:由未掺杂的芳环聚合物制成的闪烁材料可以潜在地用于辐射检测。在这里,我们证明了聚砜(PSU)无需掺杂荧光客体分子即可工作,因此拓宽了可用于辐射检测的选择范围。透明的PSU基板(1.24 g / cm〜3)可以吸收大约350 nm以下的短波光。可见光吸收使底材略带黄色,并发出靛蓝色荧光。荧光最大值出现在340 nm激发光谱和380 nm发射光谱的交点处。因此,发射被衬底部分吸收。基于折射率的波长依赖性和发射光谱得出1.70的有效折射率。由〜(207)Bi放射源的976-keV内部转换电子引起的峰值出现在光产率分布中。光产率与具有相似结构的聚苯砜的产率相同。总体而言,未掺杂的PSU可能是聚合物共混物中的组分基材,并可用作辐射检测中的教育工具。

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