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Formation and decomposition of gold oxides prepared by an oxygen-dc glow discharge from gold films and studied by X-ray photoelectron spectroscopy

机译:X射线光电子能谱研究了金膜的氧-直流辉光放电制备的金氧化物的形成和分解

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Formation and decomposition of thin (<1 nm) gold oxides prepared by an oxygen-dc glow discharge from gold films were studied by X-ray photoelectron spectroscopy (XPS). Four oxygen species comprising O 1s components I, II, IV and. are present in the XPS spectra. Component. appears in the early formation periods and then changes into the oxide component.. Components. and. are both stable at high temperatures and assigned to hydroxyl groups. The angular dependence of the XPS spectra of the gold oxides indicates that the oxygen species of components. and. are present in this order from the top surface of the gold oxide (component.). The gold oxides decompose after 36 h at room temperature and decompose immediately at temperatures exceeding 121 degrees C in a dark atmosphere. The oxides also decompose under ultraviolet (UV) light irradiation at 254, 302, and 365 nm and decompose more rapidly at the shorter wavelengths. The decomposition of the gold oxides under UV light irradiation is slower in a high vacuum but is faster in a water vapor atmosphere. The decomposition caused by UV light irradiation and its wavelength dependence indicate reaction of the gold oxides with excited water molecules produced by UV light absorption.
机译:通过X射线光电子能谱(XPS)研究了通过金膜的氧气-直流辉光放电制备的薄(<1 nm)氧化金的形成和分解。包含O 1s组分I,II,IV和O的四种氧。在XPS光谱中存在。零件。出现在早期形成阶段,然后变成氧化物成分。和。在高温下均稳定并分配给羟基。氧化金的XPS光谱的角度依赖性表明组分的氧种类。和。从氧化金(组分)的顶表面开始按此顺序存在。金氧化物在室温下36小时后分解,并在黑暗气氛中在超过121摄氏度的温度下立即分解。氧化物还会在254、302和365 nm的紫外线(UV)照射下分解,并在较短的波长下更快分解。紫外线照射下金氧化物的分解在高真空下较慢,但在水蒸气气氛下则较快。紫外线照射引起的分解及其波长依赖性表明金氧化物与紫外线吸收产生的激发水分子反应。

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