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Photoelectron emission from a polymer surface irradiated by oxygen ions

机译:氧离子辐照从聚合物表面发出的光电子

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A satellite is required to have a long life and high reliability. However, a lot of atomic oxygen (AO), an erosive agent, is present at an altitude of several 100 km. Accordingly, it is necessary to monitor the degradation degree of the materials used on the satellite surface. In this study, to characterize the surface properties, photoelectron emission characteristics of several polymers were measured using a deuterium lamp and the band path filters. In addition, PE (Polyethylene) irradiated by oxygen ions was measured. From the measurement, the threshold energy for electron emission and its quantum efficiency were evaluated. As a result, the threshold energy of polymers was about 6 eV. The magnitude of PE irradiated by oxygen ions was not remarkably changed, but irradiation did increase its quantum efficiency. To clarify the mechanism of the phenomenon, an XPS (X-ray Photoelectron Spectroscope) and an AFM (Atomic Force Microscope) were used to analyze chemical bonds at the surface introduced by ion irradiation and surface roughness. The result shows that chemical bonds including oxygen atoms play an important role.
机译:要求卫星具有长寿命和高可靠性。但是,在几百公里的高度存在大量的腐蚀剂原子氧(AO)。因此,有必要监测卫星表面上使用的材料的降解程度。在这项研究中,为了表征表面性能,使用氘灯和带通滤波器对几种聚合物的光电子发射特性进行了测量。另外,测定了被氧离子照射的PE(聚乙烯)。通过测量,评估了电子发射的阈值能量及其量子效率。结果,聚合物的阈值能量为约6eV。氧离子辐照的PE的大小没有明显变化,但辐照确实提高了其量子效率。为了阐明这种现象的机理,使用XPS(X射线光电子能谱仪)和AFM(原子力显微镜)来分析由离子辐照和表面粗糙度引入的表面化学键。结果表明,包括氧原子在内的化学键起着重要的作用。

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