Zhu Lu-Ping, Liao Gui-Hong, Yang Yang, Xiao Hong-Mei, Wang Ji-Fen, Fu Shao-Yun
Nanoscale Res Lett. 2009 Feb 27;4(6):550-557. doi: 10.1007/s11671-009-9279-9.
Three-dimensional (3D) flower-like hierarchical beta-Ni(OH)(2) hollow architectures were synthesized by a facile hydrothermal route. The as-obtained products were well characterized by XRD, SEM, TEM (HRTEM), SAED, and DSC-TGA. It was shown that the 3D flower-like hierarchical beta-Ni(OH)(2) hollow architectures with a diameter of several micrometers are assembled from nanosheets with a thickness of 10-20 nm and a width of 0.5-2.5 mum. A rational mechanism of formation was proposed on the basis of a range of contrasting experiments. 3D flower-like hierarchical NiO hollow architectures with porous structure were obtained after thermal decomposition at appropriate temperatures. UV-Vis spectra reveal that the band gap of the as-synthesized NiO samples was about 3.57 eV, exhibiting obviously red shift compared with the bulk counterpart.
通过简便的水热法合成了三维(3D)花状分级β-Ni(OH)(2)空心结构。所得产物通过XRD、SEM、TEM(HRTEM)、SAED和DSC-TGA进行了充分表征。结果表明,直径为几微米的3D花状分级β-Ni(OH)(2)空心结构由厚度为10 - 20 nm、宽度为0.5 - 2.5μm的纳米片组装而成。基于一系列对比实验提出了合理的形成机理。在适当温度下热分解后获得了具有多孔结构的3D花状分级NiO空心结构。紫外-可见光谱表明,所合成的NiO样品的带隙约为3.57 eV,与块状对应物相比表现出明显的红移。