Li Jie, Tan Li, Wang Ge, Yang Mu
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, People's Republic of China.
Nanotechnology. 2015 Mar 6;26(9):095601. doi: 10.1088/0957-4484/26/9/095601. Epub 2015 Feb 10.
Double-shelled sea urchin-like yolk-shell Fe3O4/TiO2/Au microspheres were successfully synthesized through loading Au nanoparticles on the Fe3O4/TiO2 support by a in situ reduction of HAuCl4 with NaBH4 aqueous solution. These microspheres possess tunable cavity size, adjustable shell layers, high structural stability and large specific surface area. The Au nanoparticles of approximately 5 nm in diameter were loaded both on the TiO2 nanofibers and inside the cavities of sea urchin-like yolk-shell Fe3O4/TiO2 microspheres. The sea urchin-like structure composed of TiO2 nanofibers ensure the good distribution of the Au nanoparticles, while the novel double-shelled yolk-shell structure guarantees the high stability of the Au nanoparticles. Furthermore, the Fe3O4 magnetic core facilitates the convenient recovery of the catalyst by applying an external magnetic field. The Fe3O4/TiO2/Au microspheres display excellent activities and recycling properties in the catalytic reduction of 4-nitrophenol (4-NP): the rate constant is 1.84 min(-1) and turnover frequency is 5457 h(-1).
通过用硼氢化钠水溶液原位还原氯金酸,将金纳米颗粒负载在Fe3O4/TiO2载体上,成功合成了双壳海胆状蛋黄壳结构的Fe3O4/TiO2/Au微球。这些微球具有可调节的腔尺寸、可调控的壳层、高结构稳定性和大比表面积。直径约5 nm的金纳米颗粒既负载在TiO2纳米纤维上,也负载在海胆状蛋黄壳结构的Fe3O4/TiO2微球的腔内。由TiO2纳米纤维组成的海胆状结构确保了金纳米颗粒的良好分布,而新颖的双壳蛋黄壳结构保证了金纳米颗粒的高稳定性。此外,Fe3O4磁核便于通过施加外部磁场方便地回收催化剂。Fe3O4/TiO2/Au微球在催化还原4-硝基苯酚(4-NP)中表现出优异的活性和循环性能:速率常数为1.84 min(-1),周转频率为5457 h(-1)。