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Formation of Nanoporous Tin Oxide Layers on Different Substrates during Anodic Oxidation in Oxalic Acid Electrolyte

机译:草酸电解质阳极氧化过程中在不同基质上形成纳米多孔氧化锡层。

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Nanoporous tin oxide layers were obtained on various Sn substrates including high-and low-purity foils and wire by one-step anodic oxidation carried out in a 0.3M oxalic acid electrolyte at various anodizing potentials. In general, amorphous oxide layers with the atomic ratio of Sn : O (1 : 1) were grown during anodization, and a typical structure of the as-obtained film consists of the "outer" layer with less regular, interconnetted pores and the "inner" layer with much more uniform and regular channels formed as a result of vigorous gas evolution. It was found that the use of electrochemical cell with the sample placed horizontally on the metallic support and stabilized by the Teflon cover, instead of the typical two-electrode system with vertically arranged electrodes, can affect the morphology of as-obtained layers and allows fabrication of nanoporous oxides even at anodizing potentials up to 11V. An average pore diameter in the "outer" oxide layer increases with increasing anodizing potential, and no significant effect of substrate purity on the structure of anodic film was proved, except better uniformity of the oxides grown on high-purity Sn. A strong linear relationship between the average steady-state current density and anodizing potential was also observed.
机译:通过在0.3M草酸电解质中以各种阳极氧化电位进行的一步阳极氧化,在包括高,低纯度箔和导线的各种Sn基板上获得纳米多孔氧化锡层。通常,在阳极氧化过程中会生长原子比为Sn:O(1:1)的无定形氧化物层,所得膜的典型结构由具有较少规则互连孔的“外”层和“强烈的气体逸出,形成了一层更均匀,规则的通道。结果发现,使用电化学电池将样品水平放置在金属支架上并通过特氟龙盖进行稳定,而不是使用典型的垂直放置电极的两电极系统,会影响所得层的形态并允许制造即使在高达11V的阳极氧化电位下也能产生纳米孔氧化物。 “外部”氧化物层中的平均孔径随阳极氧化电位的增加而增加,除了高纯度Sn上生长的氧化物具有更好的均匀性外,没有证明衬底纯度对阳极膜的结构有显着影响。还观察到平均稳态电流密度和阳极氧化电位之间的强线性关系。

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