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In situ Raman monitoring of materials under irradiation: Study of uranium dioxide alteration by water radiolysis

机译:辐射下材料的原位拉曼监测:水辐射分解引起的二氧化铀变化的研究

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摘要

In situ Raman scattering studies allow following real-time evolutions of volume or surface structures under extreme conditions. In nuclear materials sciences, ion irradiation-induced atomic organization modification and water radiolysis are of a major interest. In order to better understand these phenomena, we have developed an in situ versatile portable Raman spectroscopy system coupled with a cyclotron accelerator, allowing monitoring of a solid/liquid interface under irradiation and thus giving access to effects of radiolysis. The different parts of the system and their improvements are described in details. The system efficiency is highlighted by a comparative study of the time dependence of UO _2 surface modification induced, on one hand by contact with water under irradiation by 5 MeV He ~(2+) particles, and on the other hand by pure chemical alteration, through contact with a hydrogen peroxide solution.
机译:原位拉曼散射研究允许在极端条件下跟踪体积或表面结构的实时变化。在核材料科学中,离子辐照引起的原子组织修饰和水辐射分解受到了广泛关注。为了更好地理解这些现象,我们开发了一种与回旋加速器结合的原位通用便携式拉曼光谱系统,可以监控辐射下的固/液界面,从而获得放射分解作用。详细描述了系统的不同部分及其改进。通过对UO _2表面改性的时间依赖性进行比较研究来突出系统效率,一方面是在5 MeV He〜(2+)粒子的照射下与水接触,另一方面是通过纯化学变化,通过与过氧化氢溶液接触。

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