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Optical properties of well-aligned ZnO nanostructure arrays synthesized by an electric field-assisted aqueous solution method

机译:电场辅助水溶液法合成的取向良好的ZnO纳米结构阵列的光学性质

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摘要

A simple electric field-assisted aqueous solution (EFAS) technique was successfully developed to prepare 1D ZnO nanostructures with different morphologies. Changing the current density between the substrate and the Pt wire as the anode can efficiently control the morphologies of the nanostructures. The structural and optical properties of the ZnO nanostructures including nanorods and nanocones were investigated by photoluminescence and Raman spectroscopy. Raman spectrum measurements confirmed that the ZnO nanorod arrays were vertically aligned and highly c-axis oriented, with the sample treated at 0.05 mA demonstrating the best crystallization among all samples. The optical quality of the as-grown ZnO nanocones improved after thermal annealing at 500 °C because of the released functional group elements and decreased deep-level defects. These findings indicate the potential of the EFAS method to grow high-quality ZnO nanostructures for field-emission and optical applications.
机译:成功开发了一种简单的电场辅助水溶液(EFAS)技术来制备具有不同形态的一维ZnO纳米结构。改变衬底和作为阳极的Pt线之间的电流密度可以有效地控制纳米结构的形态。通过光致发光和拉曼光谱研究了包括纳米棒和纳米锥的ZnO纳米结构的结构和光学性质。拉曼光谱测量结果证实ZnO纳米棒阵列垂直排列且高度c轴取向,样品在0.05 mA电流下处理,表明所有样品中结晶效果最佳。由于释放的官能团元素和减少的深层缺陷,在500°C的温度下退火后,已生长的ZnO纳米锥的光学质量得到了改善。这些发现表明,EFAS方法具有潜在的潜力,可以为场发射和光学应用生长高质量的ZnO纳米结构。

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