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首页> 外文期刊>Electrochimica Acta >Electrochemical and morphological characterization of porous alumina formed by galvanostatic anodizing in etidronic acid
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Electrochemical and morphological characterization of porous alumina formed by galvanostatic anodizing in etidronic acid

机译:通过Etidronic and的Galvanostatic阳极氧化形成多孔氧化铝的电化学和形态学

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Electrochemical and morphological characterization of the porous alumina formed by galvanostatic anodizing in etidronic acid under various operating conditions was performed. High-purity aluminum plates were anodized in 0.03-3 M etidronic acid solutions at 273-333 K and 0.25-500 Am-2 for up to 24 h. Galvanostatic anodizing in etidronic acid operated over a wide range voltage measuring from a few V to 246 V. The time required for the steady growth of porous alumina not only depends on the current density but also the temperature and the concentration of the electrolyte solution during galvanostatic anodizing. The average, maximum, and minimum cell sizes of the porous alumina were directly proportional to the anodizing voltage with a proportionality constant of 2.5, 3.5 and 0.7, respectively, and were independent of other parameters. The number density of the cell was also a function of the anodizing voltage and agreed with the theoretical value obtained for ordered porous alumina with an ideal honeycomb distribution. The maximum voltage measured during galvanostatic anodizing was linearly proportional to the plateau voltage with a proportionality constant of 1.4. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在各种操作条件下,通过在异形酸中通过镀锌阳极氧化形成的多孔氧化铝的电化学和形态学特征。高纯度铝板在0.03-3M乙酸溶液中以273-333K和0.25-500AM-2阳极氧化,最多24小时。在宽范围的电压下操作的镀锌阳极氧化在宽范围的电压上,从几v到246V。多孔氧化铝稳定生长所需的时间不仅取决于电流密度,而且依赖于电解质溶液期间的电解质溶液的温度和浓度。阳极氧化。多孔氧化铝的平均值,最大和最小电池尺寸分别与阳极氧化电压分别与2.5,3.5和0.7的比例常数成比例,并且与其他参数无关。电池的数量密度也是阳极氧化电压的函数,并与有序多孔氧化铝获得的理论值商定,具有理想的蜂窝分布。在电流阳极阳极氧化过程中测量的最大电压与平台电压线性成比例,其比例常数为1.4。 (c)2019 Elsevier Ltd.保留所有权利。

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