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Evaluation of radiation damage behavior in polyimide aerogel by infrared camera and photoacoustic spectroscopy

机译:红外相机和光声光谱法评价聚酰亚胺气凝胶辐射损伤行为

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摘要

In this work, the optical absorption and thermal properties of polyimide aerogel have been investigated by Infrared Camera, ultraviolet-visible and photoacoustic spectroscopy under low energy proton irradiation. The characterization method of the infrared camera can obtain the optical absorption ratio, and meanwhile get the information of specific heat capacity. Moreover, it can acquire the nature information of damaged area rather than the overall performance. The results show an increase in optical absorption after proton irradiation, which is in good coincidence with Ultraviolet-visible spectroscopy analysis. And the specific heat capacity decreased linearly with proton fluences, which can be attributed to the irradiation damage and carbonization in polyimide aerogel. The Raman spectra suggested the cleavage of chemical bonds and carbonization in polyimide aerogel. This work provides the novel, non-destructive and sensitive methods to characterize irradiation damage of aerogel.
机译:在这项工作中,通过红外相机,紫外线可见光和光声光谱在低能量质子辐射下研究了聚酰亚胺气凝胶的光学吸收和热性能。 红外相机的表征方法可以获得光学吸收比,同时可以获得特定热容量的信息。 此外,它可以获得受损区域的自然信息而不是整体性能。 结果表明质子辐射后光学吸收的增加,其与紫外 - 可见光谱分析良好。 并且具有质子流量线性的比热容量可归因于聚酰亚胺气凝胶中的辐照损伤和碳化。 拉曼光谱表明聚酰亚胺气凝胶中化学键和碳化的切割。 这项工作提供了新颖的,无损和敏感的方法来表征Airgel的辐照损伤。

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