论文标题

ti $ _3^+$缺陷型对异质光催化h $ _2 $进化活动Tio $ _2 $的影响

Influence of Ti$_3^+$ Defect-type on Heterogeneous Photocatalytic H$_2$ Evolution Activity of TiO$_2$

论文作者

Mohajernia, Shiva, Andryskova, Pavlina, Zoppellaro, Giorgio, Hejazi, Seyedsina, Kment, Stepan, Zboril, Radek, Schmuki, Patrik

论文摘要

减少的二氧化钛最近引起了广泛的关注,特别是对于其独特的无共催化剂H $ _2 $异质光催化应用。降低的Tio $ _2 $的光催化活性增强了,以前归因于引入点晶体缺陷(主要是Ti $ _3^+$中心),这导致形成了内在的共催化中心并增强了可见光的吸光。在这项工作中,我们系统地研究了Tio $ _ {2-X} $ lattice在光催化H $ _2 $ Evolution中不同缺陷的效果。为了引入不同类型的缺陷,在市场上可用的解剖学纳米植物库中进行了对空气中的热退火(氧化),AR/H $ _2 $(减少)和H $ _2 $(还原)的气氛。然后,通过扫描电子显微镜(SEM),X射线衍射(XRD)和高分辨率透射电子显微镜(HR-TEM)来表征粉末,以阐明处理对材料特性的影响。此外,缺陷类型的特征是电子顺磁共振(EPR)光谱。我们表明,在不同气氛中进行热退火可以在Tio $ _2 $结构中形成不同数量的不同缺陷类型。最高的光催化活化是通过在还原气氛中退火的适当温度/退火时间来实现的。通过将H $ _2 $生成和EPR分析的结果结合在一起,我们表明,同时存在两种缺陷,即表面暴露的Ti $ _3^+$和晶格嵌入的Ti $ _3^+$中心,以最佳的低浓度为基础,是优化的PhotoCatigation Pmotocatalizit Patocataly Topataltim h $ $ _ $ _2 $ $ _2 $ _2 $ VOUTY率的确定性。实际上,在减少大气中的所谓优化条件下退火释放糖粉会导致产生相当多的h $ _2 $,速率高达338 $μ$ $ $ molh-1g-1。

Reduced titanium dioxide has recently attracted large attention, particularly for its unique co-catalyst-free H$_2$ heterogeneous photocatalytic application. The enhanced photocatalytic activity of the reduced TiO$_2$ was previously ascribed to the introduction of point crystal defects (mainly Ti$_3^+$ centers), which result in the formation of intrinsic co-catalytic centers and enhanced visible light absorption. In this work, we systematically investigate the effect of different defects in the TiO$_{2-x}$ lattice on photocatalytic H$_2$ evolution. To introduce different types of defects, thermal annealing in air (oxidative), Ar (inert), Ar/H$_2$ (reducing), and H$_2$ (reducing) atmospheres were performed on commercially available anatase nanopowder. Then, the powders were characterized by scanning electron microscopy (SEM), X-ray diffraction (XRD) and high-resolution transmission electron microscopy (HR-TEM) to clarify the effect of treatment on material properties. Furthermore, the defect types were characterized by electron paramagnetic resonance (EPR) spectroscopy. We show that thermal annealing in different atmospheres can form different amounts of different defect types in the TiO$_2$ structure. The highest photocatalytic activation is achieved by annealing the anatase powder in a reducing atmosphere for an appropriate temperature/annealing time. By combining the results from H$_2$ generation and EPR analysis we show that the simultaneous presence of two types of defects, i.e. surface exposed Ti$_3^+$ and lattice embedded Ti$_3^+$ centers, in an optimum low concentration, is the determining factor for an optimized photocatalytic H$_2$ evolution rate. In fact, annealing anatase powder under the so-reported optimized conditions in reducing atmosphere leads to the generation of a considerable amount of H$_2$, with rates as high as 338 $μ$molh-1g-1.

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