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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Preparation and characterization of nanocomposite ZnO-Ag thin film containing nano-sized Ag particles: influence of preheating,annealing temperature and silver content on characteristics
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Preparation and characterization of nanocomposite ZnO-Ag thin film containing nano-sized Ag particles: influence of preheating,annealing temperature and silver content on characteristics

机译:含纳米银颗粒的纳米复合ZnO-Ag薄膜的制备与表征:预热,退火温度和银含量对性能的影响

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摘要

Nanocomposite ZnO-Ag thin film containing nano-sized Ag particles have been grown on glass substrate by spin-coating technique using zinc acetate dihydrate as starting precursor in 2-propanol as solvent and monoetha-nolamine as stabilizer. Silver nanoparticles were added in the ZnO sol using silver nitrate dissolved in ethanol-ace-tonitrile. Their structural, electrical, crystalline size and optical properties were investigated as a function of preheating, annealing temperature and silver content. The results indicated that the crystalline phase was increased with increase of annealing temperature up to 550 °C at optimum preheating temperature of 275 °C. Thermal gravimetric differential thermal analysis results indicated that the decomposition of pure ZnO and nanocomposite ZnO-Ag precursors occurred at 225 and 234 °C, respectively with formation of ZnO wurtzite crystals. The scanning electron microscopy and atomic force microscopy revealed that the surface structure (the porosity and grain size) of the ZnO-Ag thin film (the film thickness is about 379 nm) was changed compared to pure ZnO thin film. The result of transmission electron microscopy showed that Ag particles were about 5 nm and ZnO particles 58 nm with uniform silver nanoclusters. Optical absorption results indicated that optical absorption of ZnO-Ag thin films decreased with increase of annealing temperature. Nanocomposite ZnO-Ag thin films with [Ag] = 0.068 M and [Ag] = 0.110 M showed an intense absorption band, whose maximum signals appear at 430 nm which is not present in pure ZnO thin films. The result of X-ray pho-toelectron spectroscopy revealed that the binding energy of Ag 3d_(5/2) for ZnO-Ag shifts remarkably to the lower binding energy compared to the pure metallic Ag due to the interaction between Ag and ZnO.
机译:通过旋涂技术,以乙酸锌二水合物为起始前体,以2-丙醇为溶剂,单乙醇-羟胺为稳定剂,在玻璃基板上生长了包含纳米Ag颗粒的纳米复合ZnO-Ag薄膜。使用溶解在乙醇-乙腈中的硝酸银,将纳米银颗粒添加到ZnO溶胶中。研究了它们的结构,电学,晶体大小和光学性质随预热,退火温度和银含量的变化。结果表明,在最佳预热温度为275°C时,随着退火温度的升高,结晶相增加至550°C。热重差热分析结果表明,纯ZnO和纳米复合ZnO-Ag前体的分解分别在225和234°C发生,形成ZnO纤锌矿晶体。扫描电子显微镜和原子力显微镜显示,与纯ZnO薄膜相比,ZnO-Ag薄膜(膜厚度为约379nm)的表面结构(孔隙率和晶粒尺寸)发生了变化。透射电子显微镜的结果表明,具有均匀的银纳米团簇的Ag颗粒约为5nm,ZnO颗粒约为58nm。光吸收结果表明,ZnO-Ag薄膜的光吸收随着退​​火温度的升高而降低。 [Ag] = 0.068 M和[Ag] = 0.110 M的纳米复合ZnO-Ag薄膜显示出很强的吸收带,其最大信号出现在430 nm,这在纯ZnO薄膜中不存在。 X射线光电子能谱的结果表明,与纯金属Ag相比,由于Ag与ZnO之间的相互作用,Ag 3d_(5/2)与ZnO-Ag的结合能显着转移到较低的结合能上。

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