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首页> 外文期刊>Thin Solid Films >The effect of anodizing temperature on structural features and hexagonal arrangement of nanopores in alumina synthesized by two-step anodizing in oxalic acid
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The effect of anodizing temperature on structural features and hexagonal arrangement of nanopores in alumina synthesized by two-step anodizing in oxalic acid

机译:阳极氧化温度对草酸两步阳极氧化合成氧化铝中纳米孔结构特征和六边形排列的影响

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摘要

Nanoporous anodic aluminum oxide (AAO) layers were synthesized by a two-step self-organized anodization in 0.3 M oxalic acid under various anodizing conditions. The influence of anodizing temperature on the structural features and pore arrangement of AAO was investigated. With increasing anodizing temperature, an increase of the pore diameter and porosity of AAO, as well as a decrease of the cell wall thickness and barrier layer thickness were observed. Notwithstanding, the interpore distance and pore density were found to be almost constant independently of the anodizing temperature. A degree of pore order was studied on the basis of the fast Fourier transform (FFT) images, Delaunay triangu-lations (defect maps), pair distribution functions (PDF) and the angular distribution functions (ADF). For anodizations carried out at 30 V, it was found that the better nanopore order in AAO is observed, the higher temperature is applied. It can be explain in terms of the faster reorganization of pores at the metal/oxide interface occurring during the oxide growth at elevated temperatures. On the other hand, no direct effects of the anodizing temperature on the regularity of nanoporous AAO were found for anodizations carried out at higher potentials. A significant increase of the pore circularity with increasing temperature was observed for all studied potentials. The highest values of the FFT-based, PDF and ADF-derived regularity ratios, as well as the lowest percentage of defects and the highest circularity of pores were obtained for samples anodized at 40 V independently of the anodizing temperature.
机译:纳米多孔阳极氧化铝(AAO)层是通过在0.3M草酸中在各种阳极氧化条件下进行两步自组织阳极氧化来合成的。研究了阳极氧化温度对AAO结构特征和孔排列的影响。随着阳极氧化温度的升高,观察到了AAO的孔径和孔隙率的增加,以及孔壁厚度和阻挡层厚度的减小。尽管如此,发现孔间距和孔密度与阳极氧化温度无关而几乎恒定。在快速傅里叶变换(FFT)图像,Delaunay三角剖分(缺陷图),对分布函数(PDF)和角度分布函数(ADF)的基础上研究了孔隙度。对于在30 V下进行的阳极氧化,发现观察到AAO中的纳米孔顺序越好,则应用的温度越高。可以用在高温下氧化物生长期间金属/氧化物界面处的孔的更快重组来解释。另一方面,对于在较高电势下进行的阳极氧化,没有发现阳极氧化温度对纳米孔AAO的规则性有直接影响。对于所有研究的电势,观察到孔的圆形度随温度升高而显着增加。对于在40 V下进行阳极氧化的样品,与阳极氧化温度无关,获得了基于FFT,PDF和ADF得出的规则性比率的最大值,以及最低的缺陷百分比和最高的孔圆度。

著录项

  • 来源
    《Thin Solid Films》 |2013年第1期|155-161|共7页
  • 作者单位

    Department of Physical Chemistry and Electrochemistry, Faculty of Chemistry, Jagiellonian University, Ingardena 3, 30-060 Krakow, Poland;

    Department of Advanced Materials and Technologies, Faculty of Advanced Technology and Chemistry, Military University of Technology, Gen. Sylwestra Kaliskiego 2, 00-908 Warszawa,Poland;

    Academic Computer Centre CYFRONET, AGH University of Science and Technology, Nawojki 11, 30-950 Krakow, Poland;

    Department of Physical Chemistry and Electrochemistry, Faculty of Chemistry, Jagiellonian University, Ingardena 3, 30-060 Krakow, Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    anodization; porous alumina; self-organization; pore arrangement; defect analysis; nanopores;

    机译:阳极氧化多孔氧化铝自组织孔排列;缺陷分析;纳米孔;

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