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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Hydrogen Emission and Macromolecular Radiation-Induced Defects in Polyethylene Irradiated under an Inert Atmosphere: The Role of Energy Transfers toward trans-Vinylene Unsaturations
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Hydrogen Emission and Macromolecular Radiation-Induced Defects in Polyethylene Irradiated under an Inert Atmosphere: The Role of Energy Transfers toward trans-Vinylene Unsaturations

机译:在惰性气氛下辐照的聚乙烯中的氢发射和大分子辐射诱导的缺陷:能量转移对反乙烯基的不饱和键的作用

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摘要

This article is aimed at studying the evolution of H-2 release as well as radiation-induced defects in polyethylene (PE), as a function of the irradiation dose under anoxic conditions. We analyze the influence of the energy transfers and trapping toward radiation-induced defects on the evolution of the radiation chemical yields with dose. One key objective herein is to quantify the contribution of these transfers toward trans-vinylene (TV) on H-2 emission. For this purpose, pure PE was irradiated in a large dose domain and H-2 emission was compared to that in predoped PEs containing chemically inserted TV groups irradiated at low doses. In parallel, evolutions of the concentrations of the TV groups and minor defects (vinyl and trans trans-diene) as a function of dose were considered. Moreover, measuring simultaneously H-2 and unsaturated groups had allowed inferring the cross-linking evolution with dose. With this methodology, we have succeeded in quantifying the efficiency of TVs and cross-links as energy traps and, using simple models, in fully describing the evolution of all of the radiation chemical yields. Besides, irradiations were performed using either low linear energy transfer irradiations (electron beams, gamma rays) or ion beams, with the objective to assess the influence of the high ionization and excitation densities induced by the latter on PE ageing and energy transfer processes.
机译:本文旨在研究缺氧条件下H-2释放的演变以及聚乙烯(PE)中辐射诱导的缺陷与辐射剂量的关系。我们分析了能量转移和向辐射诱发的缺陷的俘获对辐射化学产率随剂量的演变的影响。本文的一个主要目标是量化这些转移对H-2排放向反亚乙烯基(TV)的贡献。为此,在大剂量范围内辐照纯PE,并将H-2发射与含有低剂量辐照的化学插入TV基团的预掺杂PE进行比较。同时,考虑了TV基团的浓度和微小缺陷(乙烯基和反式二烯)的浓度随剂量的变化。此外,同时测量H-2和不饱和基团可以推断出交联剂量的演变。使用这种方法,我们已经成功地量化了电视和交叉链接作为能量陷阱的效率,并使用简单的模型充分描述了所有辐射化学收率的变化。此外,使用低线性能量转移辐射(电子束,伽马射线)或离子束进行照射,目的是评估后者引起的高电离和激发密度对PE老化和能量转移过程的影响。

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