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Zinc oxide nanotetrapods

机译:氧化锌纳米四足动物

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The carrier gas flow rate, a key parameter for controlling the morphology and size in the synthesis of nanomaterials by thermal evaporation-vapour phase transport-condensation processes, can significantly affect the shape and size of the products. Besides nanoscale ZnO dendrites and wires, a uniform tetrapod-shaped ZnO nanostructure has also been successfully synthesized by using a controlled carrier gas flow rate during synthesis. The ZnO nanotetrapod was formed via a vapour-solid process. The special structural character of the nanotetrapods may have interesting physical properties and potential applications in semiconductor electronic devices.
机译:载气流速是控制通过热蒸发-气相转移-冷凝过程合成纳米材料的形态和尺寸的关键参数,它会显着影响产品的形状和尺寸。除了纳米级的ZnO树枝状晶体和金属丝外,还通过在合成过程中使用受控载气流速成功地合成了均匀的四脚形ZnO纳米结构。 ZnO纳米四脚架是通过蒸气固相工艺形成的。纳米四足动物的特殊结构特征可能在半导体电子器件中具有令人感兴趣的物理特性和潜在应用。

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