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首页> 外文期刊>Electrochemical and solid-state letters >Optical Anisotropy and Porosity of Anodic Aluminum Oxide Characterized by Spectroscopic Ellipsometry
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Optical Anisotropy and Porosity of Anodic Aluminum Oxide Characterized by Spectroscopic Ellipsometry

机译:椭圆偏振光谱法表征阳极氧化铝的光学各向异性和孔隙率

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摘要

Anodic oxidation of aluminum results in a mesoporous oxide film. The thin-film geometry of our samples enables straightforward optical modeling of ellipsometry spectra of fully anodized films, using only three physically relevant parameters. The system of randomly distributed, but aligned cylindrical pores gives rise to an optical anisotropy, which is incorporated using the original work of Bruggeman. The optically determined film thickness and cylinder porosity only agree with electron microscopy results when the oxide is considered as a nanoporous matrix. Upon chemical etching, the cylinder porosity increases with time from 10 to 80 percent, while the aluminum oxide nanoporosity of 33 percent hardly changes.
机译:铝的阳极氧化产生中孔氧化膜。我们的样品的薄膜几何形状仅使用三个物理相关参数即可对完全阳极氧化的膜的椭圆偏振光谱进行直接光学建模。随机分布但对齐的圆柱孔的系统产生了光学各向异性,该各向异性是使用Bruggeman的原始工作并入的。当氧化物被认为是纳米多孔基体时,光学确定的膜厚和圆柱孔率仅与电子显微镜结果一致。通过化学蚀刻,圆柱体的孔隙率会随着时间从10%增加到80%,而33%的氧化铝纳米孔隙率几乎不变。

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