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Electrochemical route to the synthesis of ZnO microstructures: its nestlike structure and holding of Ag particles

机译:ZnO微观结构合成的电化学途径:其巢状结构和Ag颗粒的固持

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摘要

AbstractA simple and facile electrochemical route was developed for the shape-selective synthesis of large-scaled series of ZnO microstructures, including petal, flower, sphere, nest and clew aggregates of ZnO laminas at room temperature. This route is based on sodium citrate-directed crystallization. In the system, sodium citrate can greatly promote ZnO to nucleate and directly grow by selectively capping the specific ZnO facets because of its excellent adsorption ability. The morphology of ZnO is tuned by readily adjusting the concentration of sodium citrate and the electrodeposition time. Among the series structures, the remarkable ZnO nestlike structure can be used as a container to hold not only the interlaced ZnO laminas but also Ag nanoparticles in the center. The special heterostructures of nestlike ZnO holding Ag nanoparticles were found to display the superior properties on the surface-enhanced Raman scattering. This work has signified an important methodology to produce a wide assortment of desired microstructures of ZnO.
机译:摘要在室温下,开发了一种简单而简便的电化学路线,用于大规模选择一系列ZnO微观结构的形状选择合成,包括花瓣,花朵,球形,巢状和提示聚集体。该途径基于柠檬酸钠定向结晶。在该系统中,柠檬酸钠具有出色的吸附能力,可以通过选择性地覆盖特定的ZnO晶面来极大地促进ZnO成核并直接生长。可以通过轻松调节柠檬酸钠的浓度和电沉积时间来调整ZnO的形态。在这一系列结构中,杰出的ZnO巢状结构不仅可以用作隔行的ZnO层板,而且还可以将Ag纳米颗粒固定在中心。发现巢状ZnO的Ag纳米颗粒的特殊异质结构在表面增强拉曼散射上显示出优异的性能。这项工作标志着一种重要的方法论,可以生产出各种所需的ZnO微观结构。

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