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首页> 外文期刊>Electrochimica Acta >Fabrication of Self-Ordered Porous Alumina via Etidronic Acid Anodizing and Structural Color Generation from Submicrometer-Scale Dimple Array
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Fabrication of Self-Ordered Porous Alumina via Etidronic Acid Anodizing and Structural Color Generation from Submicrometer-Scale Dimple Array

机译:通过亚微米级酒窝阵列通过对映体酸阳极氧化和结构颜色生成来制备自定序多孔氧化铝。

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摘要

Highly ordered anodic porous alumina with a large-scale cell diameter was successfully fabricated via anodizing in a new electrolyte, etidronic acid (1-hydroxyethane-1,1-diphosphonic acid). High-purity aluminum specimens were anodized in a 0.3 M etidronic acid solution under constant current density and voltage conditions. Etidronic acid anodizing at 210 to 270 V at the appropriate temperature caused the anodic porous alumina to exhibit self-ordering behavior, and periodic nanostructures measuring 530 to 670 nm in cell diameter were fabricated on the aluminum substrate. The self-ordering voltage and the corresponding cell diameter could be increased without burning by systematically increasing the stepwise voltage. Two-step etidronic acid anodizing without nanoimprinting can easily yield the formation of highly ordered anodic porous alumina with a large-scale cell diameter. A submicrometers-cale dimple array fabricated via etidronic acid anodizing and subsequent selective oxide dissolution gave rise to bright structural color with a rainbow distribution. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过在新型电解质乙二膦酸(1-羟乙烷-1,1-二膦酸)中进行阳极氧化,成功制备了具有大孔直径的高度有序的阳极多孔氧化铝。高纯铝样品在恒定电流密度和电压条件下在0.3 M的乙二膦酸溶液中进行阳极氧化。在适当的温度下于210至270 V进行阳极氧化,使阳极多孔氧化铝表现出自有序行为,并在铝基板上制备了孔径为530至670 nm的周期性纳米结构。通过系统地增加逐步电压,可以增加自排序电压和相应的电池直径而不会燃烧。不进行纳米压印的两步乙二酸阳极氧化可轻松形成具有大孔直径的高度有序的阳极多孔氧化铝。通过乙二酸阳极氧化和随后的选择性氧化物溶解制备的亚微米级酒窝阵列产生了具有彩虹分布的明亮结构颜色。 (C)2015 Elsevier Ltd.保留所有权利。

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