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Control of morphology and surface wettability of anodic niobium oxide microcones formed in hot phosphate-glycerol electrolytes

机译:控制在热磷酸盐-甘油电解质中形成的阳极氧化铌微锥的形态和表面润湿性

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摘要

We report the fabrication of superhydrophobic surfaces with a hierarchical morphology by self-organized anodizing process. Simply by anodizing of niobium metal in hot phosphate-glycerol electrolyte, niobium oxide microcones, consisting of highly branched oxide nanofibers, develop on the surface. The size of the microcones and their tip angles are controlled by changing the applied potential difference in anodizing and the water content in the electrolyte. Reduction of the water content increases the size of the microcones, with the nanofibers changing to nanoparticles. The size of microcones is also reduced by increasing the applied potential difference, without influencing the tip angle. The hierarchical oxide surfaces are superhydrophilic, with static contact angles close to 0°. Coating of the anodic oxide films with a monolayer of fluoroalkyl phosphate makes the surfaces superhydrophobic with a contact angle for water as high as 175° and a very small contact angle hysteresis of only 2°. The present results indicate that the larger microcones with smaller tip angles show the higher contact angle for water.
机译:我们报告了通过自组织阳极氧化工艺制造的具有分层形态的超疏水表面。仅通过在热磷酸盐-甘油电解质中对铌金属进行阳极氧化,即可在表面形成由高度支化的氧化物纳米纤维组成的氧化铌微锥。通过改变阳极氧化中施加的电势差和电解质中的水含量来控制微锥的尺寸及其尖端角。随着纳米纤维变成纳米颗粒,水含量的减少增加了微锥的尺寸。通过增加施加的电势差,还可以减小微锥的尺寸,而不会影响尖端角度。分层的氧化物表面是超亲水的,静态接触角接近0°。用氟代烷基磷酸酯单层涂覆阳极氧化膜使表面超疏水,与水的接触角高达175°,很小的接触角滞后仅2°。目前的结果表明,较大的微锥和较小的顶角显示出较高的水接触角。

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