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Phase Transformations in CuO Caused by Bombardment by He~+ Ions and by the Action of Spherical Shock Waves

机译:He〜+离子轰击和球形激波作用下CuO的相变

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The valence state of copper ions and the phase composition of copper monoxide CuO subjected to bombardment by He~+ ions and explosive shock waves are studied by the methods of x-ray photoelectron spectroscopy (XPS) and x-ray emission spectroscopy (XES). Measurements of photoelectron Cu 2p and emission O K_α spectra revealed a decrease in the concentration of Cu~(2+) ions and partial reduction of CuO to Cu_2O as a result of both ion bombardment and shock-wave loading. The concentration of the Cu_2O phase attained values of 10-15%. The Cu_2O phase is revealed by the XPS and XES methods even at concentrations lower than its threshold concentration for detection by x-ray diffraction measurements. This points to the effectiveness of XPS and XES techniques in studying nanocrystalline materials and defect structures containing finely dispersed inclusions. A model for the emergence of Cu_2O due to the formation of charged clusters under the action of stress waves is proposed.
机译:利用X射线光电子能谱(XPS)和X射线发射光谱法(XES)研究了He〜+离子和爆炸性冲击波轰击后的铜离子的价态和一氧化铜CuO的相组成。对光电子Cu 2p和发射OK_α光谱的测量表明,由于离子轰击和冲击波加载,Cu〜(2+)离子的浓度降低,CuO还原为Cu_2O。 Cu_2O相的浓度达到10-15%的值。即使在低于通过X射线衍射测量检测的阈值浓度的浓度下,也可以通过XPS和XES方法显示Cu_2O相。这表明XPS和XES技术在研究包含细分散夹杂物的纳米晶体材料和缺陷结构方面的有效性。提出了一种在应力波作用下Cu_2O由于带电团簇的形成而出现的模型。

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