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首页> 外文期刊>Quimica nova >TiO2-MEDIATED PHOTOCATALYSIS AT THE NANOPARTICULATE STATE: REVIEW OF THE REACTIVITY BY THE TRAPPING CONCEPT AND SOME APPLICATIONS IN ANALYTICAL CHEMISTRY
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TiO2-MEDIATED PHOTOCATALYSIS AT THE NANOPARTICULATE STATE: REVIEW OF THE REACTIVITY BY THE TRAPPING CONCEPT AND SOME APPLICATIONS IN ANALYTICAL CHEMISTRY

机译:TiO2介导的纳米颗粒状态的光催化:通过诱捕概念和分析化学中的一些应用审查反应性

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TiO2 has been used as a white pigment and studied since the first decades of the XX century for the undesirable chalking of outdoor paintings exposed to sunlight. Since the first report of Honda and Fujishima (1972) of the water splitting by the harvesting of sunlight on a n-type single crystal TiO2 electrode, the engagement of researchers with the field has grown steadily. TiO2-photocatalysis has joined the group of advanced oxidation processes for potential new water and wastewater treatments but, despite of its high chemical and photochemical stability and the great oxidizing power of its photogenerated holes, photons in UVA spectral region are needed to accomplish the high band gap, limiting the yield of sun-driven environmental applications. Nevertheless, this shortcoming has not restricted benchtop research and small and medium scale applications also relying on artificial UV sources, especially nowadays that highly-efficient UVA-LEDs are available. Herein, we review the fundamental aspects and the practical attributions of the trapping model in the charge transfer kinetics of photogenerated holes in nanoparticulate TiO2. Regarding to new practical uses, we focus our attention on some ingenious applications of this photocatalyst in the field of analytical chemistry, covering also subjects never reviewed before.
机译:TiO2已被用作白色颜料,并自XX世纪的第一个十几年来研究,因为不良粉笔粉笔露出暴露在阳光下的户外绘画。自本田和富士岛(1972)的第一份报告通过收获阳光在N型单晶TiO2电极上的水分,研究人员与该领域的接合稳步增长。 TiO2-光催化已经加入了潜在的新水和废水处理的先进氧化方法,但尽管其光化孔的高化学和光化学稳定性以及其光生孔的巨大氧化力,因此需要在UVA光谱区域中实现高带的光子间隙,限制了阳光驱动的环境应用的产量。尽管如此,这种缺点并未限制台式研究,中小型应用也依赖于人造紫外源,特别是现在提供高效的UVA-LED。在此,我们审查了纳米颗粒TiO2中光发生孔的电荷转移动力学中捕获模型的基本方面和实际属性。关于新的实际用途,我们将注意力集中在这种光催化剂在分析化学领域的一些巧妙应用,覆盖也从未审查过。

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