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Flame Aerosol Synthesis of Freestanding ZnO Nanorods

机译:独立式ZnO纳米棒的火焰气溶胶合成

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ZnO can be made into many nanostructures that have unique properties for advanced applications, such as piezoelectric and pyroelectric materials. ZnOnanorod is one of the nanostructures that possess advanced properties. This paper reports a gas phase flame process to continuously synthesize aerosols of ZnOnanorods in large quantities. Unlike previous work, our process shows that pure ZnOnanorods can be made in a freestanding form rather than growing on a substrate surface. It was found that the ZnOnanorods preferentially grow in the thermodynamically stable direction [001] in the gas phase with different aspect ratios, depending on flame process conditions. The ZnOnanorod aerosols are highly crystalline and have a hexagonal geometry. Raman and photoluminescence spectroscopic studies showed that there are no structural defects in the nanorods, which have energy band gap of 3.27 eV in the near UV region. It was demonstrated that the gas phase flame reactor can provide a convenient means for continuous production of highly pure aerosols of ZnOnanorods.
机译:ZnO可以制成许多纳米结构,这些独特的特性可用于高级应用,例如压电和热电材料。 Znanoanorod是具有先进性能的纳米结构之一。本文报道了一种气相火焰法,用于连续大量合成Znanoanorods气溶胶。与以前的工作不同,我们的过程表明,纯的Znanoanorods可以制成独立形式,而不是在基材表面上生长。已经发现,Znanoanorods在气相中以不同的长宽比优先在热力学稳定的方向[001]上生长,具体取决于火焰处理条件。 ZnOnanorod气溶胶是高度结晶的并且具有六边形的几何形状。拉曼光谱和光致发光光谱研究表明,纳米棒中没有结构缺陷,在近紫外区域的能带隙为3.27 eV。结果表明,气相火焰反应器可为连续生产高纯度的Znanoanorods气雾剂提供便利的手段。

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