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Formation of surface oxides and Ag2O thin films with atomic oxygen on Ag(111)

机译:在Ag(111)上用原子氧形成表面氧化物和Ag2O薄膜

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The nature of the oxygen species adsorbed to silver surfaces is a key component of the heterogeneously catalyzed epoxidation of ethylene and partial oxidation of methanol over silver catalysts. We report the formation of two different silver-oxygen species depending on the flux and energy of incident gas-phase oxygen atoms on an Ag(111) surface. A combination of surface science techniques was used to characterize the oxidized surfaces. Atomic oxygen was generated with an Ir filament; lower temperatures created surface oxides previously reported. When O was deposited with a higher filament temperature, the surface became highly corrugated, little sub-surface oxygen was observed, and thin layers of Ag2O were likely formed. These results show that the energy and flux of oxygen are important parameters in the chemical identity and abundance of oxygen on silver surfaces and suggest that formation of the Ag2O thin film hinders formation of subsurface oxygen. (C) 2015 Elsevier B.V. All rights reserved.
机译:吸附到银表面的氧的性质是乙烯在银催化剂上进行异相催化环氧化和甲醇部分氧化的关键组成部分。我们报告了两种不同的银-氧物种的形成,具体取决于Ag(111)表面上入射气相氧原子的通量和能量。表面科学技术的组合用于表征氧化表面。 Ir灯丝产生原子氧;较低的温度产生了先前报道的表面氧化物。当在较高的灯丝温度下沉积O时,表面变得高度波纹化,几乎看不到次表面的氧气,并且可能形成薄的Ag2O层。这些结果表明,氧气的能量和通量是银表面化学性质和氧气丰度的重要参数,并且表明Ag2O薄膜的形成阻碍了表面氧气的形成。 (C)2015 Elsevier B.V.保留所有权利。

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