Yu Hongjian, Li Jieyuan, Zhang Yihe, Yang Songqiu, Han Keli, Dong Fan, Ma Tianyi, Huang Hongwei
Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes, School of Materials Science and Technology, China University of Geosciences, Beijing, 100083, China.
College of Architecture and Environment, Sichuan University, Chengdu, Sichuan, 610065, China.
Angew Chem Int Ed Engl. 2019 Mar 18;58(12):3880-3884. doi: 10.1002/anie.201813967. Epub 2019 Jan 29.
A facile and controllable in situ reduction strategy is used to create surface oxygen vacancies (OVs) on Aurivillius-phase Sr Bi Nb TiO nanosheets, which were prepared by a mineralizer-assisted soft-chemical method. Introduction of OVs on the surface of Sr Bi Nb TiO extends photoresponse to cover the whole visible region and also tremendously promotes separation of photoinduced charge carriers. Adsorption and activation of CO molecules on the surface of the catalyst are greatly enhanced. In the gas-solid reaction system without co-catalysts or sacrificial agents, OVs-abundant Sr Bi Nb TiO nanosheets show outstanding CO photoreduction activity, producing CO with a rate of 17.11 μmol g h , about 58 times higher than that of the bulk counterpart, surpassing most previously reported state-of-the-art photocatalysts. Our study provides a three-in-one integrated solution to advance the performance of photocatalysts for solar-energy conversion and generation of renewable energy.
采用一种简便且可控的原位还原策略,在通过矿化剂辅助软化学方法制备的 Aurivillius 相 SrBiNbTiO 纳米片上创建表面氧空位(OVs)。在 SrBiNbTiO 表面引入氧空位可将光响应扩展至覆盖整个可见光区域,还极大地促进了光生电荷载流子的分离。催化剂表面对 CO 分子的吸附和活化能力大幅增强。在没有助催化剂或牺牲剂的气固反应体系中,富含氧空位的 SrBiNbTiO 纳米片展现出出色的 CO 光还原活性,产 CO 速率为 17.11 μmol g⁻¹ h⁻¹,约为块状材料的 58 倍,超过了此前报道的大多数最先进的光催化剂。我们的研究为提高光催化剂用于太阳能转换和可再生能源生成的性能提供了一种三合一的综合解决方案。