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The nanoporous anodic alumina oxide formed by two-step anodization

机译:通过两步阳极氧化形成的纳米多孔阳极氧化铝

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The nanoporous anodic aluminum oxide (AAO) was fabricated by two-step anodization technique. The effects of anodization electrolyte and time on the pore diameter and structural properties of the AAO were investigated. The Field Emission-Scanning Electron Microscopy was used for the analysis of the surface morphology of AAO structure. The nanoporous structures with the pore size in the range of 31-113 nm and oxide layer thickness 3.4-33 mu m were obtained. Wetting properties of these surfaces were characterized by measurements of the water contact angle. It was seen that the surface of the AAO became hydrophilic with the increase in the anodization time. Furthermore, we explored the mechanical properties and thermal stabilities of the AAO by microhardness and thermo-gravimetric analysis measurements. It was found that the AAO structures synthesized in the electrolyte containing ethylene glycol solution have the highest hardness and display well thermal stability among the other structures. The surface area and crystal structure of AAO were determined by surface area analysis and X-ray diffraction patterns measurements. Experimental results showed that the AAO structures have amorphous phase and the highest surface area is 2.59m(2)/g.
机译:通过两步阳极氧化技术制备了纳米多孔阳极氧化铝(AAO)。研究了阳极氧化电解质和时间对AAO孔径和结构性能的影响。场发射扫描电子显微镜用于分析AAO结构的表面形态。得到孔径在31-113nm范围内且氧化物层厚度为3.4-33μm的纳米孔结构。这些表面的润湿性通过水接触角的测量来表征。可以看出,随着阳极氧化时间的增加,AAO的表面变得亲水。此外,我们通过显微硬度和热重分析法测量了AAO的机械性能和热稳定性。发现在包含乙二醇溶液的电解质中合成的AAO结构在其他结构中具有最高的硬度并且显示出良好的热稳定性。通过表面积分析和X射线衍射图测量来确定AAO的表面积和晶体结构。实验结果表明,AAO结构具有非晶相,最大表面积为2.59m(2)/ g。

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