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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Surface oxygen-vacancy induced photocatalytic activity of La(OH)(3) nanorods prepared by a fast and scalable method
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Surface oxygen-vacancy induced photocatalytic activity of La(OH)(3) nanorods prepared by a fast and scalable method

机译:快速和可扩展方法制备的表面氧空位诱导的La(OH)(3)纳米棒的光催化活性

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摘要

Uniform one-dimensional defective La(OH)(3) nanorods were synthesized by a facile, fast and scalable method. This simple method avoids treatment at high temperature, utility of surfactants or templates, and can be finished within a short time. The results indicate that oxygen-vacancies were formed in La(OH)(3) nanorods, which could extend the photoresponse range. The XPS, PL, solid state ESR measurements and DFT calculations revealed the pivotal role of oxygen-vacancy in the formation of an impurity level in the band gap of La(OH)(3). The as-prepared La(OH)(3) nanorods exhibited efficient photocatalytic activity in the removal of NO at the ppb-level under ultraviolet illumination. The highly enhanced photocatalytic activity of La(OH)(3) nanorods could be ascribed to the synergy of the lower impurity level below the conduction band and the high separation efficiency of photogenerated electron-hole pairs. DMPO-ESR spin trapping results imply that the hydroxyl radicals are the main reactive species that are responsible for NO photooxidation. On the basis of combined experimental and theoretical investigation, an oxygen vacancy-mediated photocatalysis mechanism of defective La(OH)(3) nanorods was proposed. This work could not only provide a fast and environmentally friendly approach for the synthesis of nanostructured photocatalysts, but also new insights into the understanding of the role of vacancy in semiconductor photocatalysis.
机译:通过简便,快速和可扩展的方法合成了均匀的一维有缺陷的La(OH)(3)纳米棒。这种简单的方法避免了高温处理,表面活性剂或模板的使用,并且可以在短时间内完成。结果表明,La(OH)(3)纳米棒中形成了氧空位,这可能会扩展光响应范围。 XPS,PL,固态ESR测量和DFT计算揭示了氧空位在La(OH)(3)带隙中杂质水平形成中的关键作用。所制备的La(OH)(3)纳米棒在紫外线照射下以ppb级去除NO时显示出有效的光催化活性。 La(OH)(3)纳米棒的高度增强的光催化活性可以归因于低于能带的较低杂质水平和光生电子-空穴对的高分离效率的协同作用。 DMPO-ESR自旋捕集结果表明,羟基自由基是负责NO光氧化的主要反应物种。在实验和理论研究相结合的基础上,提出了氧空位介导的有缺陷的La(OH)(3)纳米棒的光催化机理。这项工作不仅可以为合成纳米结构光催化剂提供一种快速且对环境友好的方法,而且可以为了解空位在半导体光催化中的作用提供新的见解。

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