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The influence of the morphological characteristics of nanoporous anodic aluminium oxide (AAO) structures on capacitive touch sensor performance: a biological application

机译:纳米多孔阳极氧化铝(AAO)结构的形态特征对电容式触摸传感器性能的影响:生物学应用

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This work is devoted to the study of the influence of different anodic aluminium oxide (AAO) morphologies on the sensitivity and performance of an AAO-based capacitive touch sensor. The AAO structures were fabricated in a cylindrical homemade anodization cell made from a solid polycarbonate billet via a lathe machining process. The AAO morphologies were obtained from the anodization of Al foil by using three different types of electrolyte (sulphuric acid, oxalic acid and phosphoric acid) and their morphologies are reported and compared using scanning electron microscopy (SEM) micrographs and current–time characteristic curves. The sensors were fabricated by integrating the AAO structure with a nanotextured gold thin film deposited over the AAO layer by thermal evaporation, thus realizing a type of metal/insulator/metal parallel-plate capacitance sensor. It is demonstrated that AAO morphologies have influence on the performance of the AAO-based capacitive touch sensors. The variation of the capacitance of the sensors is investigated in this work for the AAO structures produced from anodization in an attempt to select anodizing conditions for a biological application aiming to detect small microorganisms such as bacterial colonies of Escherichia coli .
机译:这项工作致力于研究不同的阳极氧化铝(AAO)形态对基于AAO的电容式触摸传感器的灵敏度和性能的影响。 AAO结构是通过车床加工工艺在由固态聚碳酸酯坯料制成的圆柱形自制阳极氧化槽中制造的。通过使用三种不同类型的电解质(硫酸,草酸和磷酸)从铝箔的阳极氧化获得AAO形态,并报告其形态并使用扫描电子显微镜(SEM)显微照片和电流-时间特性曲线进行比较。传感器是通过将AAO结构与通过热蒸发沉积在AAO层上的纳米纹理金薄膜集成在一起而制成的,从而实现了一种金属/绝缘体/金属平行板电容传感器。结果表明,AAO的形态对基于AAO的电容式触摸传感器的性能有影响。在这项工作中,对阳极氧化产生的AAO结构的传感器电容的变化进行了研究,试图为生物应用选择阳极氧化条件,目的是检测诸如大肠杆菌的菌落之类的小微生物。

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