Wang Manchao, Peng Lin, Wang Jiahui, Li Changqing, Guan Lihao, Lin Yuqing
Department of Chemistry, Capital Normal University, Beijing 100048, China.
J Nanosci Nanotechnol. 2018 Dec 1;18(12):8269-8275. doi: 10.1166/jnn.2018.16405.
In this study, hierarchical ternary nanocomposites, i.e., Cu-TiO2-mesoporous silica microspheres (Cu-TiO2-MSM), were synthesized as ternary photocatalyst system to improve the visible light photocatalytic degradation of the environmental pollutant model dye methylene blue (MB). The innovation of this method is in situ depositing TiO2 and Cu2O nanoparticles sequentially onto the surface of mesoporous silica microspheres to form highly active heterostructure. The improved activity for the degradation of MB is attributed to: (1) the high adsorption capacity of the porous and interconnected-channel-structure MSM to MB; (2) the valence band electrons of TiO2 released from the conduction band generating abundant highly active free radicals, which directly reacted with adsorbed MB. The photocatalytic degradation efficiency to MB was found to be 98% in 5 min, and almost 100% in 20 min. This study paves a way for the development of a ternary-doped catalyst for visible light photocatalytic degradation and may exhibit widely application in industry.
在本研究中,合成了分级三元纳米复合材料,即铜-二氧化钛-介孔二氧化硅微球(Cu-TiO₂-MSM),作为三元光催化剂体系,以提高环境污染物模型染料亚甲基蓝(MB)的可见光光催化降解性能。该方法的创新之处在于将TiO₂和Cu₂O纳米颗粒依次原位沉积在介孔二氧化硅微球表面,形成高活性异质结构。MB降解活性的提高归因于:(1)具有多孔和相互连通通道结构的MSM对MB的高吸附能力;(2)从导带释放的TiO₂价带电子产生大量高活性自由基,这些自由基直接与吸附的MB反应。发现对MB的光催化降解效率在5分钟内为98%,在20分钟内几乎为100%。本研究为开发用于可见光光催化降解的三元掺杂催化剂铺平了道路,并且可能在工业中具有广泛的应用。