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Surface oxygen vacancy and defect engineering of WO3 for improved visible light photocatalytic performance

机译:表面氧空位和缺陷工程的WO3提高可见光的光催化性能

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摘要

Lattice defects of semiconductors have a tremendous influence on the photo-absorption and separation of photogenerated electron-hole pairs; thus the photocatalytic performance of a semiconductor can be modulated by creation of defects on/in it. In this work, WO3-X photocatalysts with oxygen vacancies were prepared from highly crystalline WO3 by vacuum heat treatment. The resulting WO3-X samples with defects were characterized by Raman, XPS, DRS, ESR and photocatalytic water oxidation experiments. The results revealed that the visible light absorption of WO3-X increased with increasing vacuum heat treatment temperature. The surface oxygen vacancies of WO3-X could significantly improve the photoelectric behaviour. WO3-X showed the maximum photocurrent density, which is 3 times higher than that of the pristine WO3, and a much higher photocatalytic activity than the pristine WO3. The surface oxygen vacancies on WO3-X played a more important role in the separation of photogenerated electron-hole pairs and improvement of the photocatalytic activity than the bulk defects. These results indicated that controlling of the number and types of oxygen vacancies on WO3 is important to obtain high-performance WO3-X photocatalysts.
机译:半导体的晶格缺陷对photo-absorption和巨大的影响分离photogenerated电子空穴对;的光催化性能可以调制半导体创建的缺陷/。催化剂和氧空位准备从高度结晶WO3真空热处理。缺陷的特征拉曼,XPS, DRS,ESR,光催化水氧化实验。可见光的吸收WO3-X增加增加真空热处理温度。表面氧WO3-X的空缺显著提高光电的行为。密度,这是3倍原始的WO3和更高的光催化比原始的WO3活动。氧气WO3-X发挥了更重要的职位空缺在photogenerated的分离作用电子空穴对和改善光催化活性比大部分缺陷。这些结果表明,控制的数量和类型的氧气对WO3空缺重要的获得高性能WO3-X论文的。

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