论文标题

使用TIO2纳米管的光催化:彩色反应性和设计位点特异性光催化中心到TIO2纳米管中

Photocatalysis with TiO2 Nanotubes: Colorful Reactivity and Designing Site-Specific Photocatalytic Centers into TiO2 Nanotubes

论文作者

Zhou, Xuemei, Liu, Ning, Schmuki, Patrik

论文摘要

由于各种新的策略和发现,他们有望通过修饰钛脚手架和化学的修改,从而大大提高此类反应的效率和特异性,因此最近在TIO2上的光催化反应最近获得了巨大的复苏。鉴于几何形状,尤其是阳极TiO2纳米管引起了广泛的兴趣,因为它们不仅可以在光催化反应中,而且在光电化学反应中可以高度控制光学载体载体的分离。有序的纳米管阵列的关键优点是,可以将纳米管修饰专门嵌入到管壁中。也就是说,可以将cocatalyst,掺杂物种或连接处放在管壁上高度定义的所需位置(或带有所需的常规几何形状或图案)上。这允许对催化和光催化反应的反应位点的能量学的前所未有的工程水平,这些反应不仅针对较高的效率,而且针对反应的选择性。许多最近的试管变化具有形态学性质(介孔结构,设计的面状结构,杂种或1D结构),但是由于光吸收光谱的扩展是在可见的范围内广泛的,因此广泛的兴趣是广泛的兴趣,因为它引起了广泛的兴趣(即黑色,黑色,蓝色,红色,绿色,绿色,灰色)的兴趣,因为它的远景范围是独特的,因为可见型的活性和独特的凝结型都可以养成远景。目前的观点在光催化中概述了TIO2纳米管,重点是使用纳米管阵列的最新进展,并讨论了定制其光催化反应性的基本概念。

Photocatalytic reactions on TiO2 have recently gained an enormous resurgence because of various new strategies and findings that promise to drastically increase efficiency and specificity of such reactions by modifications of the titania scaffold and chemistry. In view of geometry, in particular, anodic TiO2 nanotubes have attracted wide interest, as they allow a high degree of control over the separation of photogenerated charge carriers not only in photocatalytic reactions but also in photoelectrochemical reactions. A key advantage of ordered nanotube arrays is that nanotube modifications can be embedded site specifically into the tube wall; that is, cocatalysts, doping species, or junctions can be placed at highly defined desired locations (or with a desired regular geometry or pattern) along the tube wall. This allows an unprecedented level of engineering of energetics of reaction sites for catalytic and photocatalytic reactions, which target not only higher efficiencies but also the selectivity of reactions. Many recent tube alterations are of a morphologic nature (mesoporous structures, designed faceted crystallites, hybrids, or 1D structures), but a number of color-coded (namely, black, blue, red, green, gray) modifications have attracted wide interest because of the extension of the light absorption spectrum of titania in the visible range and because unique catalytic activity can be induced. The present Perspective gives an overview of TiO2 nanotubes in photocatalysis with an emphasis on the most recent advances in the use of nanotube arrays and discusses the underlying concepts in tailoring their photocatalytic reactivity.

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