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Highly Ordered Porous Anodic Alumina with Large Diameter Pores Fabricated by an Improved Two-Step Anodization Approach

机译:改进的两步阳极氧化法制备大直径孔的高阶多孔阳极氧化铝

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The aim of this study is to prepare highly ordered porous anodic alumina(PAA) with large pore sizes (>200 nm) by an improved two-step anodization approach which combines the first hard anodization in oxalic acid water ethanol system and second mild anodization in phosphoric acid water ethanol system. The surface morphology and elemental composition of PAA are characterized by field emission scanning electron microscopy (FESEM) and energy-dispersive X-ray spectrometer (EDS). The effects of matching of two-step anodizing voltages on the regularity of pore arrangement is evaluated and discussed. Moreover, the pore formation mechanism is also discussed. The results show that the nanopore arrays on all the PAA samples are in a highly regular arrangement and the pore size is adjustable in the range of 200-300 nm. EDS analysis suggests that the main elements of the as-prepared PAA are oxygen, aluminum and a small amount of phosphorus. Furthermore, the voltage in the first anodization must match well with that in the second anodization, which has significant influence on the PAA regularity. The addition of ethanol to the electrolytes effectively accelerates the diffusion of the heat that evolves from the sample, and decreases the steady current to keep the steady growth of PAA film. The improved two-step anodization approach in this study breaks through the restriction of small pore size in oxalic acid and overcomes the drawbacks of irregular pore morphology in phosphoric acid, and is an efficient way to fabricate large diameter ordered PAA.
机译:这项研究的目的是通过改进的两步阳极氧化方法来制备大孔径(> 200 nm)的高序多孔阳极氧化铝(PAA),该方法将草酸水乙醇系统中的第一次硬质阳极氧化处理与第二次中性阳极氧化相结合。磷酸水乙醇系统。 PAA的表面形态和元素组成通过场发射扫描电子显微镜(FESEM)和能量色散X射线光谱仪(EDS)表征。评估和讨论了两步阳极氧化电压匹配对孔排列规则性的影响。此外,还讨论了孔的形成机理。结果表明,所有PAA样品上的纳米孔阵列均呈高度规则排列,且孔径可在200-300 nm范围内调节。 EDS分析表明,所制备的PAA的主要元素是氧气,铝和少量的磷。此外,第一阳极氧化中的电压必须与第二阳极氧化中的电压良好匹配,这对PAA规则性具有显着影响。向电解液中添加乙醇可以有效地加速从样品中散发出来的热量的扩散,并减少稳定电流以保持PAA膜的稳定生长。这项研究中改进的两步阳极氧化方法突破了草酸中小孔径的限制,克服了磷酸中孔形不规则的缺点,是制备大直径有序PAA的有效方法。

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