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首页> 外文期刊>Journal of Materials Science >Facile regulation of crystalline phases and exposed facets on Ti3+ self-doped TiO2 for efficient photocatalytic hydrogen evolution
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Facile regulation of crystalline phases and exposed facets on Ti3+ self-doped TiO2 for efficient photocatalytic hydrogen evolution

机译:在Ti3 +自掺杂TiO2上轻松调节晶相和裸露面,以有效地光催化制氢

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摘要

The control of the photocatalytic activity of TiO2 by tailoring their crystalline structure and electronic structure is a current topic of great interest. In the present study, the phase composition and exposed facets on Ti3+ self-doped TiO2 were regulated by simply changing the fluorinion concentration during the hydrothermal synthesis process of TiO2. It was found that the phase composition can be tuned facilely, and the phase transformation process was analyzed by XRD and UV Raman spectroscopy. The introducing fluorinion during the hydrothermal preparation of TiO2 resulted in F-doping and phase transformation. And the F-doping also affects the amount of Ti3+ ions in the TiO2. SEM analysis indicated that the morphology and exposed facets changed with the change in fluorinion concentration, and the ratios of exposed facets are adjustable. Through systematically optimizing these parameters, the TiO2 prepared under fluorinion concentration of 17.5 mM showed the excellent photocatalytic performance under full spectrum illumination. The good photocatalytic performance was mainly attributed to the more phase junctions and surface heterojunctions for enhancing charge separation.
机译:通过定制TiO 2的晶体结构和电子结构来控制其光催化活性是当前引起人们极大兴趣的主题。在本研究中,通过简单地改变TiO2的水热合成过程中的氟离子浓度,可以调节Ti3 +自掺杂TiO2的相组成和暴露面。发现可以容易地调节相组成,并且通过XRD和UV拉曼光谱分析相转变过程。 TiO2水热制备过程中引入的氟离子导致F掺杂和相变。 F掺杂也会影响TiO2中Ti3 +离子的数量。 SEM分析表明,随着氟离子浓度的变化,形貌和暴露面均发生变化,暴露面的比例可调节。通过系统地优化这些参数,在氟离子浓度为17.5 mM的条件下制备的TiO2在全光谱照明下显示出优异的光催化性能。良好的光催化性能主要归因于更多的相结和表面异质结,以增强电荷分离。

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