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Charge behavior in a plasmonic photocatalyst composed of Au and TiO2

机译:在电浆光催化剂收费行为盟和二氧化钛组成

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摘要

Photocatalysts are widely used in environmental and energy fields because of their sustainable characteristics. Recently, a plasmonic photocatalyst which can absorb more photons has been invented in order to enhance the photocatalytic activity of conventional photocatalysts (such as TiO2). However, the reported activities are not as high as expected. One of the reasons for this is that the mechanism of photocatalysis is not very well understood yet. Thus, here, redox reaction sites on a Au nanoparticle-deposited TiO2 (Au/TiO2) plasmonic photocatalyst are visualized using a chemical microanalytical technique for investigating charge behaviors in Au/TiO2. Ag and Mn oxide are deposited on the surface of Au/TiO2 by reduction and oxidation reactions, respectively. The amounts of Ag and Mn oxide deposited on different sites of Au/TiO2 are measured to clarify the percentage of the consumption of generated charges at each site. A probable charge behavior is proposed based on literature reports and the results obtained in this work.
机译:催化剂广泛应用于环境因为他们的可持续发展和能源领域特征。光催化剂可以吸收更多的光子是为了提高发明的传统的光催化活性的催化剂(如二氧化钛)。报道活动并不像预期的那样高。其中一个原因是机制光催化作用不是很好理解然而。nanoparticle-deposited二氧化钛(Au /二氧化钛)电浆使用化学光催化剂是可视化微量分析技术研究收费行为非盟/二氧化钛。盟/二氧化钛表面沉积减少分别和氧化反应。大量的Ag)和锰氧化物沉积在不同网站的非盟/二氧化钛测量澄清的比例产生的消费在每个站点上的指控。提出了基于文献报道和结果在这工作。

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