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首页> 外文期刊>Journal of Surface Analysis >A Synchrotron Radiation Photoelectron Spectroscopic Study on the Oxidation of Si in Diamond-like Carbon Film by Hyperthermal O-atom Beam
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A Synchrotron Radiation Photoelectron Spectroscopic Study on the Oxidation of Si in Diamond-like Carbon Film by Hyperthermal O-atom Beam

机译:同步辐射光电子能谱研究高温O-原子束对类金刚石碳膜中Si的氧化作用

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摘要

Oxidation reaction efficiency of the embedded Si atoms in the diamond-like carbon (DLC) film was studied with a combination of the broad O-atom beam, high-speed chopper wheel and synchrotron radiation photoelectron spectroscopy (SR-PES). The high-speed chopper wheel converted the translational energy distribution of O-atom into spatial distribution on the DLC surface. High spatial and energy resolutions of SR-PES allow studying the difference in oxidation states of Si atoms in different translational energies. It was confirmed that the SiO_(2) was formed by the high-energy collision conditions of O-atoms, whereas sub-oxides are formed with the low-energy collisions. The efficiency of SiO_(2) formation at 9 eV-collision is evaluated to be 4 times greater than that at 2 eV-collision.
机译:结合宽的O原子束,高速斩波轮和同步加速器辐射光电子能谱(SR-PES),研究了类金刚石碳(DLC)膜中嵌入的Si原子的氧化反应效率。高速斩波轮将O原子的平移能量分布转换为DLC表面上的空间分布。 SR-PES的高空间分辨率和能量分辨率允许研究不同转化能中Si原子氧化态的差异。可以确认,SiO_(2)是由O原子的高能碰撞条件形成的,而亚氧化物是由低能碰撞形成的。 SiO_(2)形成效率在9 eV碰撞时比在2 eV碰撞时高4倍。

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