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Oxygen vacancies assist a facet effect to modulate the microstructure of TiO2 for efficient photocatalytic O2 activation

机译:氧空位有助于调节 TiO2 微观结构的微观效应,从而实现高效的光催化 O2 活化

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摘要

Defect engineering is recognized as an effective route to obtaining highly active photocatalytic materials. However, the current understanding of the role of defects in photocatalysts mainly comes from their independent functional analysis, ignoring the synergy between defects and the chemical environment, especially with crystal facets. Herein, oxygen vacancy (VO)-rich TiO2 nanostructures with different dominant exposed facets were prepared, and the microstructural changes induced by the synergy between the VO and facet effect and the performance difference of photocatalytic O2 activation were explored. The results showed that the combination of high concentration VO and the {101} facet is more conducive to improving the photocatalytic performance of TiO2, which is significantly superior to the combination of low concentration VO and the {101} facet as well as the combination of high concentration VO and the {001} facet. The experimental and theoretical results clarified the dependence of each stage of photocatalysis on two factors. Specifically, VO plays a more significant role in energy band regulation, improving the dynamic behavior of photogenerated charges and enhancing the adsorption and activation of O2, while the facet effect made more contributions to reducing the thermodynamic energy barrier of ROS formation and conversion. The excellent ability of O2 activation enables T101-VO to show potential application characteristics in the removal of RhB and bacterial disinfection. This work established a link between defect and facet effects, providing new insights into understanding defect function in photocatalysts.
机译:缺陷工程被认为是有效的途径获得高活性光催化材料。论文的主要缺陷的作用来自于他们独立的功能分析,忽视和缺陷之间的协同作用化学环境,尤其是晶体方面。纳米结构与不同主导暴露方面的准备,和微观结构签证官之间的协同作用和变化面效果和性能的差异光催化O2激活进行了探讨。结果表明,高的结合签证官和{101}面浓度有利于提高光催化二氧化钛的性能,这是明显的优于低浓度的组合签证官和{101}面以及组合高浓度VO和{001}面。实验和理论结果澄清了每个阶段的依赖光催化两个因素。重要的角色在能带的规定,改善photogenerated的动态行为费用和提高吸附O2的激活,而方面的效果减少了热力学作出更多的贡献ROS的能量势垒形成和转换。O2激活支持的能力T101-VO显示潜在的应用程序在移除RhB和特征细菌消毒。缺陷和方面效果之间的联系,提供新的视角理解缺陷的功能在论文的。

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