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Optimum Exploration for the Self-Ordering of Anodic Porous Alumina Formed via Selenic Acid Anodizing

机译:硒酸阳极氧化形成阳极多孔氧化铝自有序性的最佳探索

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摘要

Improvements of the regularity of the arrangement of anodic porous alumina formed by selenic acid anodizing were investigated under various operating conditions. The oxide burning voltage increased with the stirring rate of the selenic acid solution, and the high applied voltage without oxide burning was achieved by vigorously stirring the solution. The regularity of the porous alumina was improved as the anodizing time and surface flatness increased. Conversely, the purity of the 99.5–99.9999 wt% aluminum specimens without second phases of metals and metallic compounds was not affected by the regularity of the porous alumina formed by selenic acid anodizing. The porous alumina was also self-ordered on/around a defect, such as a grain boundary, under self-ordering high voltage anodizing conditions. A highly ordered cell arrangement measuring 111 nm in diameter was successfully fabricated over the whole aluminum surface by selenic acid anodizing using a 99.999 wt% aluminum plate at 273 K and 46 V for 24 h under vigorous stirring conditions.
机译:在各种操作条件下,研究了通过硒酸阳极氧化形成的阳极多孔氧化铝排列规则性的改进。氧化物燃烧电压随着硒酸溶液的搅拌速率而增加,并且通过剧烈搅拌溶液而获得了没有氧化物燃烧的高施加电压。随着阳极氧化时间和表面平整度的增加,多孔氧化铝的规则性得到改善。相反,不含硒和金属化合物第二相的99.5–99.9999 wt%铝样品的纯度不受硒酸阳极氧化形成的多孔氧化铝规则性的影响。在自定序的高压阳极氧化条件下,多孔氧化铝还在缺陷例如晶界上/周围自定序。在99.999 wt%的铝板上,在273 K和46 V下,在剧烈搅拌条件下,通过硒酸阳极氧化,成功地在整个铝表面上制造了直径为111 nm的高度有序的单元排列。

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