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Low-Cost Nanostructured Coating of Anodic Aluminium Oxide Synthesized in Sulphuric Acid as Electrolyte

机译:低成本纳米结构涂层在硫酸中合成的阳极氧化铝作为电解质

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The anodic oxidation of aluminium is an electrochemical technique that allows obtaining nanostructures with easily adjustable morphology depending on the synthesis variables, for its application in medicine, engineering, biotechnology, electronics, etc. In this work, low-cost aluminium oxide nanostructured films were synthesized and morphologically characterized using two anodization steps in sulphuric acid, varying the concentration and temperature of the electrolyte and anodization voltage. The order of the porous matrix, pore diameter, interpore distance, pore density, thickness, and porosity were measured and statistically analyzed. The results showed that under the proposed conditions it is possible to synthesize low-cost nanoporous aluminium oxide films, with a short-range ordering, being the best ordering conditions 10 °C and 0.3 M sulphuric acid at 20 V and 5 °C and 2 M sulphuric acid at 15 V. Furthermore, it was determined that the pore diameter and the interpore distance vary proportionally with the voltage, that the pore density decreases with the voltage and increases with the concentration of the electrolyte, and that the thickness of the oxide film increases with electrolyte concentration, temperature, and anodization voltage.
机译:铝的阳极氧化是一种电化学技术,允许根据合成变量获得纳米结构,这取决于合成变量,其在该工作中的应用,工程,生物技术,电子设备等应用,合成了低成本的氧化铝纳米结构薄膜在形态学上使用硫酸中的两个阳极氧化步骤,改变电解质和阳极氧化电压的浓度和温度。测量和统计分析多孔基质,孔径,内部距离,孔密度,厚度和孔隙率的顺序。结果表明,在所提出的条件下,可以合成低成本的纳米氧化铝氧化膜,具有短范围的排序,是10℃和0.3米硫酸的最佳订购条件为20 V和5°C和2在15V的M硫酸。此外,确定孔径和内部距离随电压成比例地随电压而变化,孔密度随电压降低并随着电解质的浓度而增加,氧化物的厚度增加,并且氧化物的厚度增加薄膜随电解质浓度,温度和阳极氧化电压而增加。

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