Zheng Yuanhui, Zheng Lirong, Zhan Yingying, Lin Xingyi, Zheng Qi, Wei Kemei
National Engineering Research Center of Chemical Fertilizer Catalyst, Fuzhou University, Gongye Road 523, Fuzhou, Fujian 350002, China.
Inorg Chem. 2007 Aug 20;46(17):6980-6. doi: 10.1021/ic700688f. Epub 2007 Jul 21.
A high yield of the dimer-type heterostructure of Ag/ZnO nanocrystals with different Ag contents is successfully prepared through a simple solvothermal method in the absence of surfactants. The samples are characterized by X-ray diffraction, transmission electron microscopy, X-ray photoelectron spectroscopy, UV-vis spectroscopy, and IR spectroscopy. The results show that all samples are composed of metallic Ag and ZnO; Ag nanoparticles locate on the surface of ZnO nanorods; the binding energy of Ag 3d(5/2) for the Ag/ZnO sample with a Ag content of 5.0 atom % shifts remarkably to the lower binding energy compared with the corresponding value of pure metallic Ag because of the interaction between Ag and ZnO nanocrystals; the concentration of oxygen vacancy for the as-synthesized samples varies with the increasing Ag content, and the Ag/ZnO sample with a Ag content of 5.0 atom % has the largest density of oxygen vacancy. In addition, the relationship between their structure and photocatalytic property is investigated in detail. It is found that the photocatalytic property is closely related to its structure, such as heterostructure, oxygen defect, and crystallinity. The presence of metallic Ag nanoparticles and oxygen vacancy on the surface of ZnO nanorods promotes the separation of photogenerated electron-hole pairs and thus enhances the photocatalytic activity.
在无表面活性剂的情况下,通过简单的溶剂热法成功制备了具有不同银含量的Ag/ZnO纳米晶体二聚体型异质结构,产率很高。通过X射线衍射、透射电子显微镜、X射线光电子能谱、紫外可见光谱和红外光谱对样品进行了表征。结果表明,所有样品均由金属Ag和ZnO组成;Ag纳米颗粒位于ZnO纳米棒的表面;由于Ag与ZnO纳米晶体之间的相互作用,Ag含量为5.0原子%的Ag/ZnO样品中Ag 3d(5/2)的结合能相对于纯金属Ag的相应值显著向较低结合能移动;合成样品的氧空位浓度随Ag含量的增加而变化,Ag含量为5.0原子%的Ag/ZnO样品具有最大的氧空位密度。此外,还详细研究了它们的结构与光催化性能之间的关系。发现光催化性能与其结构密切相关,如异质结构、氧缺陷和结晶度。ZnO纳米棒表面金属Ag纳米颗粒和氧空位的存在促进了光生电子-空穴对的分离,从而提高了光催化活性。