Bai Jinwu, Sun Jingyu, Zhu Xiaohe, Liu Jiandang, Zhang Haijun, Yin Xue-Bo, Liu Lu
Tianjin Key Laboratory of Environmental Remediation and Pollution Control, College of Environmental Science and Engineering and College of Chemistry, Nankai University, Tianjin, 300071, P. R. China.
State Key Laboratory of Particle Detection and Electronics, University of Science and Technology of China (USTC), Hefei, Anhui, 230026, P. R. China.
Small. 2020 Feb;16(5):e1904783. doi: 10.1002/smll.201904783. Epub 2020 Jan 14.
The increasing application of exposed high energy facet is an effective strategy to improve the photocatalytic performance of photocatalysts because the vacancies are beneficial to photocatalytic reaction. Vacancy dominates numerous distinct properties of semiconductor materials and thus plays a conclusive role in the photocatalysis applications. In this work, two kinds of BiOI nanomaterials with different vacancies are synthesized via a facile solvothermal method. The positron annihilation analysis shows that the thinner BiOI nanosheets possess larger-sized vacancy than BiOI nanoplates. Thus, BiOI nanosheets show the enhanced separation efficiency of electron-hole pairs and adsorption ability for contaminants under visible light. The results are also validated with the first-principle computation. Therefore, higher photocatalytic activity to the photodegradation of tetracycline is observed from the nanosheets than that obtained from BiOI nanoplates. This work not only arouses attention to vacancies, but also opens up an avenue for precision design of vacancies to prepare novel photocatalytic materials driven under solar light.
暴露高能晶面的应用不断增加是提高光催化剂光催化性能的有效策略,因为空位有利于光催化反应。空位主导着半导体材料的许多独特性质,因此在光催化应用中起着决定性作用。在这项工作中,通过简便的溶剂热法合成了两种具有不同空位的BiOI纳米材料。正电子湮没分析表明,较薄的BiOI纳米片比较厚的BiOI纳米板具有更大尺寸的空位。因此,BiOI纳米片在可见光下显示出增强的电子-空穴对分离效率和对污染物的吸附能力。结果也通过第一性原理计算得到了验证。因此,纳米片对四环素光降解的光催化活性高于BiOI纳米板。这项工作不仅引起了人们对空位的关注,也为精确设计空位以制备在太阳光驱动下的新型光催化材料开辟了一条途径。