Instituto Nacional de Investigaciones Nucleares, Carr. México-Toluca S/N La Marquesa, Ocoyoacac, Edo. de México, Mexico.
Phys Chem Chem Phys. 2011 Oct 6;13(37):16756-61. doi: 10.1039/c1cp21017c. Epub 2011 Aug 19.
Silver nanowires were used as templates to synthesize silver-doped CeO(2) (Ag-CeO(2)) nanotubes by the precipitation method. The precipitated solid was dried at 100 °C for 24 h and calcined at 500 °C for 5 h. A TEM, HRTEM, LV-SEM and XRD study was carried out to determine the micro and nanostructural characteristics of the samples. LV-SEM analysis allowed us to observe microtubular empty structures constituted by Ce, O and Ag as indicated by EDS. These tubular structures, with an external diameter from 120 to 280 nm and an internal diameter from 40 to 80 nm, were mainly composed of 11 nm ceria nanoparticles. This kind of structures was obtained when CeO(2) nanoparticles covered the Ag nanowires during the synthesis. Due to the presence of ammonium hydroxide used during the synthesis, a fraction of the silver nanowire reacts and Ag atoms begin to migrate outside the ceria microtube. When the sintering process is applied, the Kirkendall effect can occur. So, out-diffusion of the remnant Ag through the interface is faster than the in-diffusion of the shell material (CeO(2)), which eventually results in a coaxial nanotube on completion of the non-equilibrium interdiffusion, leaving the central core completely empty, driving the formation of hollow tubular Ag-CeO(2) structures as a result.
采用银纳米线作为模板,通过沉淀法合成了掺银氧化铈(Ag-CeO(2))纳米管。沉淀后的固体在 100°C 下干燥 24 小时,并在 500°C 下煅烧 5 小时。通过 TEM、HRTEM、LV-SEM 和 XRD 研究确定了样品的微观和纳米结构特征。LV-SEM 分析使我们能够观察到由 EDS 指示的由 Ce、O 和 Ag 组成的微管状空结构。这些管状结构的外径为 120 至 280nm,内径为 40 至 80nm,主要由 11nm 的氧化铈纳米颗粒组成。当 CeO(2)纳米颗粒在合成过程中覆盖 Ag 纳米线时,就会获得这种结构。由于在合成过程中使用了氨水溶液,一部分银纳米线会发生反应,Ag 原子开始向氧化铈微管外迁移。当施加烧结过程时,可能会发生 Kirkendall 效应。因此,残余 Ag 通过界面的外扩散速度比壳层材料(CeO(2))的内扩散速度快,最终导致在非平衡互扩散完成后形成同轴纳米管,从而形成空心管状 Ag-CeO(2)结构。