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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Gamma irradiation induced chemical and structural modifications in PM-355 polymeric nuclear track detector film
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Gamma irradiation induced chemical and structural modifications in PM-355 polymeric nuclear track detector film

机译:γ辐照引起PM-355聚合物核径迹检测器膜的化学和结构改性

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摘要

This experimental study investigated the modification of chemical and structural properties of PM-355 films by irradiation of 1.25 MeV ~(60)Co γ-radiations at doses ranging from 0-675 kGy. The induced modifications were followed by micro-Raman and X-ray diffraction (XRD) spectroscopy. Further, the induced modifications were confirmed by UV-Visible spectroscopy. Raman spectra show that the films are highly disordered at the highest gamma dose. The XRD pattern of PM-355 shows the decreasing intensity of peak positions with an increase in the gamma dose, which suggests the loss of crystallinity of the films due to irradiation. Observed results indicate the formation of a disordered system in the irradiated films. Furthermore, the crystallite size for pristine and bombarded sample has been calculated. Moreover, interchain distance, micro strain, interplanar distance, dislocation density and distortion parameters were calculated. The analysis revealed a significant increase in micro strain, dislocation density and distortion parameters with an increase of gamma dose, which is in line with the Raman analysis. With increasing y-dose, the value of the direct and indirect band gap found to decrease. To the best of our knowledge, this work is the first to show the simultaneous existence of direct as well as the indirect band gap in PM-355 polymer.
机译:该实验研究通过在0-675 kGy的剂量范围内辐照1.25 MeV〜(60)Coγ射线来改变PM-355膜的化学和结构性质。诱导的修饰之后是显微拉曼光谱和X射线衍射(XRD)光谱。此外,通过UV-可见光谱确认了诱导的修饰。拉曼光谱表明,在最高伽马剂量下,这些薄膜高度无序。 PM-355的XRD图谱显示,随着γ剂量的增加,峰位置的强度降低,这表明由于辐照导致膜的结晶度降低。观察结果表明在被辐照的薄膜中形成了无序的系统。此外,已计算出原始样品和轰击样品的微晶尺寸。此外,计算了链间距离,微应变,平面间距离,位错密度和变形参数。分析显示,随着γ剂量的增加,微应变,位错密度和变形参数显着增加,这与拉曼分析一致。随着y剂量的增加,发现直接带隙和间接带隙的值减小。据我们所知,这项工作是第一个证明PM-355聚合物同时存在直接和间接带隙的工作。

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    Department of Physics, Sant Longowal Institute of Engineering and Technology, Longowal District, Sangrur, Punjab 148 106, India;

    School of Physical Sciences, BBA University (A Central University), Lucknow 226 025, India;

    Department of Physics, Sant Longowal Institute of Engineering and Technology, Longowal District, Sangrur, Punjab 148 106, India;

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  • 正文语种 eng
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  • 关键词

    PM-355; gamma rays; raman; UV-visible; XRD;

    机译:PM-355;伽马射线;拉曼紫外线可见X射线衍射;

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