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Micro-Raman Spectroscopic Characterization of a CR-39 Detector

机译:CR-39检测器的微喇曼光谱表征

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摘要

Characterization by micro-Raman spectroscopy of polymeric materials used as nuclear track detectors reveals physico-chemical and morphological information on the material's molecular structure. In this work, the nuclear track detector poly(allyl diglycol carbonate), or Columbia Resin 39 (CR-39), was characterized according to the fluence of alpha particles produced by a ~(226)Ra source and chemical etching time. Therefore, damage of the CR-39 chemical structure due to the alpha-particle interaction with the detector was analyzed at the molecular level. It was observed that the ionization and molecular excitation of the CR-39 after the irradiation process entail cleavage of chemical bonds and formation of latent track. In addition, after the chemical etching, there is also loss of polymer structure, leading to the decrease of the group density C-O-C (~888 cm~(-1)), CH=CH (~960 cm~(-1)), C-O (~1110 cm~(-1)), C-O-C (~1240 cm~(-1)), C-O (~1290 cm~(-1)), C=O (~1741 cm~(-1)), -CH_2-(~2910 cm~(-1)), and the main band -CH_2-(~2950 cm~(-1)). The analyses performed after irradiation and chemical etching led to a better understanding of the CR-39 molecular structure and better comprehension of the process of the formation of the track, which is related to chemical etching kinetics.
机译:用微拉曼光谱法对用作核径迹检测器的聚合材料进行表征,可以揭示该材料分子结构的物理化学和形态学信息。在这项工作中,根据〜(226)Ra源产生的α粒子的通量和化学蚀刻时间,对核径迹检测器聚碳酸碳酸烯丙二酯或哥伦比亚树脂39(CR-39)进行了表征。因此,在分子水平上分析了由于α-粒子与检测器的相互作用对CR-39化学结构的破坏。观察到,在辐照过程之后,CR-39的电离和分子激发需要化学键的断裂和潜在轨道的形成。此外,化学蚀刻后,聚合物结构也发生损失,导致基团密度COC(〜888 cm〜(-1)),CH = CH(〜960 cm〜(-1))降低。 CO(〜1110 cm〜(-1)),COC(〜1240 cm〜(-1)),CO(〜1290 cm〜(-1)),C = O(〜1741 cm〜(-1)), -CH_2-(〜2910 cm〜(-1)),主带-CH_2-(〜2950 cm〜(-1))。辐照和化学蚀刻后进行的分析使人们对CR-39分子的结构有了更好的了解,并更好地理解了轨道的形成过程,这与化学蚀刻动力学有关。

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