Di Jun, Xia Jiexiang, Ge Yuping, Xu Li, Xu Hui, Chen Jun, He Minqiang, Li Huaming
School of Chemistry and Chemical Engineering, Jiangsu University, 301 Xuefu Road, Zhenjiang, 212013, P. R. China.
Dalton Trans. 2014 Nov 7;43(41):15429-38. doi: 10.1039/c4dt01652a.
Novel sphere-like MoS2/BiOBr composites were prepared by a facile ethylene glycol (EG)-assisted solvothermal process in the presence of the ionic liquid 1-hexadecyl-3-methylimidazolium bromide ([C16mim]Br). A nanostructured heterojunction, with few-layer MoS2 deposited on the surface of BiOBr microspheres, was constructed. During the synthetic process, the ionic liquid acted as a reactant, a template and a dispersing agent at the same time, leading to the formation of few-layer MoS2 dispersed on the surface of BiOBr microspheres. The MoS2/BiOBr composites exhibited much higher visible light photocatalytic activity towards rhodamine B (RhB) photodegradation than pure BiOBr. 3 wt% MoS2/BiOBr possessed the optimal photocatalytic activity, which was approximately 2.5 times as high as that of pure BiOBr. Through multiple characterization techniques, the relationship between the specific structure and the admirable photocatalytic activity of the MoS2/BiOBr microspheres was investigated. The critical role of the few-layer MoS2 in the MoS2/BiOBr microspheres was explored. A photocatalytic mechanism for the MoS2/BiOBr composites was also proposed.
通过在离子液体1-十六烷基-3-甲基咪唑溴盐([C16mim]Br)存在下的简便乙二醇(EG)辅助溶剂热法制备了新型球状MoS2/BiOBr复合材料。构建了一种纳米结构异质结,其中几层MoS2沉积在BiOBr微球表面。在合成过程中,离子液体同时充当反应物、模板和分散剂,导致形成分散在BiOBr微球表面的几层MoS2。MoS2/BiOBr复合材料对罗丹明B(RhB)光降解表现出比纯BiOBr更高的可见光光催化活性。3 wt%的MoS2/BiOBr具有最佳光催化活性,约为纯BiOBr的2.5倍。通过多种表征技术,研究了MoS2/BiOBr微球的特定结构与优异光催化活性之间的关系。探索了几层MoS2在MoS2/BiOBr微球中的关键作用。还提出了MoS2/BiOBr复合材料的光催化机理。