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首页> 外文期刊>Journal of the European Ceramic Society >Nucleation and growth of ZnO nanorods on the ZnO-coated seed surface by solution chemical method
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Nucleation and growth of ZnO nanorods on the ZnO-coated seed surface by solution chemical method

机译:溶液化学法在ZnO包覆种子表面上ZnO纳米棒的形核和生长

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ZnO nanorods on ZnO-coated seed surfaces were fabricated by solution chemical method using supersaturated (ZnNO_3)_2/NaOH at 70 deg C. The seed surfaces were coated on glass substrates by sol-gel processing, and their texture was dominated by heating temperatures, cooling styles and layer thickness per dipping. The effects of the seed surface on the morphology of the resultant nanorods were primarily discussed. The orientation and morphology of both the seed surface and successive nanorods were analyzed by using XRD and SEM. It is proved that when the seed size increases from 15 to 50 nm with temperature increasing, the average diameter of the resultant nanorods increase from 25 to 50 nm, with a length of 800 nm after growing for 1.5 h. The seed surface prepared by heating at 300-400 deg C, fast cooling or drawing at lower speed has better orientation and few surface defects, which leads to higher density of nuclei on the seed surface and thus to the optimal preferred crystal growth of ZnO rods standing perpendicular onto substrates.
机译:ZnO包覆的种子表面上的ZnO纳米棒是通过溶液化学方法在70℃下使用过饱和(ZnNO_3)_2 / NaOH制备的。种子表面通过溶胶-凝胶工艺涂覆在玻璃基板上,其质地主要受加热温度的影响,冷却方式和每次浸入的层厚。首先讨论了种子表面对所得纳米棒形态的影响。使用XRD和SEM分析了种子表面和连续纳米棒的取向和形态。结果表明,随着温度的升高,晶种尺寸从15nm增加到50nm时,纳米棒的平均直径从25nm增加到50nm,生长1.5h后的平均长度为800nm。通过在300-400摄氏度下加热,快速冷却或以较低的速度拉伸而制得的晶种表面具有更好的取向和很少的表面缺陷,从而导致晶种表面上的核密度更高,从而导致ZnO棒的最佳优选晶体生长垂直于基材站立。

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