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首页> 外文期刊>ChemEngineering >Photodegradation of Stearic Acid Adsorbed on Copper Oxide Heterojunction Thin Films Prepared by Magnetron Sputtering
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Photodegradation of Stearic Acid Adsorbed on Copper Oxide Heterojunction Thin Films Prepared by Magnetron Sputtering

机译:磁控溅射法制备的氧化铜异质结薄膜上吸附的硬脂酸的光降解

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Nanocrystalline copper oxide thin films were fabricated by reactive DC magnetron sputtering. The structure and optical properties of the films were measured with X-ray diffraction, scanning electron microscopy, and spectrophotometry. Variations of oxygen partial pressure resulted in oxide composition ranging from Cu, Cu-Cu2O, Cu2O-CuO1?x, and CuO. Optical band transitions at 2.06 eV and 2.55 eV were found for Cu2O corresponding to the direct forbidden and direct allowed interband transitions. For CuO an indirect allowed interband transition was found at 1.28 eV. The photocatalytic activity was determined by quantifying the rate constant and quantum yield (destroyed molecules/photons absorbed) under stearic acid degradation. Photocatalytic activity was found to be highest in mixed-phase films with Cu-Cu2O films the highest. Results from post-annealed Cu-Cu2O and CuO films show similar results. We interpret our results as being due to efficient electron-hole charge separation in the heterojunction films. The obtained quantum yields were generally about ten times lower than for comparable dense TiO2 and WO3 binary oxides, which calls for further studies of the spectral dependence of the quantum yield and electron-hole pair life times for oxides with different purity levels.
机译:通过反应直流磁控溅射制备纳米晶氧化铜薄膜。用X射线衍射,扫描电子显微镜和分光光度法测量薄膜的结构和光学性能。氧分压的变化导致氧化物组成为Cu,Cu-Cu2O,Cu2O-CuO1xx和CuO。对于Cu 2 O,发现在2.06 eV和2.55 eV的光带跃迁对应于直接禁止和直接允许的带间跃迁。对于CuO,发现在1.28 eV处存在间接允许的带间跃迁。通过定量在硬脂酸降解下的速率常数和量子产率(破坏的分子/吸收的光子)来确定光催化活性。发现在混合相膜中光催化活性最高,而Cu-Cu2O膜最高。后退火Cu-Cu2O和CuO膜的结果显示出相似的结果。我们将结果解释为归因于异质结薄膜中有效的电子-空穴电荷分离。获得的量子产率通常比可比的致密TiO2和WO3二元氧化物低约十倍,这要求进一步研究不同纯度水平的氧化物的量子产率和电子-空穴对寿命的光谱依赖性。

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