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首页> 外文期刊>RSC Advances >Massive, eco-friendly, and facile fabrication of multi-functional anodic aluminum oxides: application to nanoporous templates and sensing platforms
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Massive, eco-friendly, and facile fabrication of multi-functional anodic aluminum oxides: application to nanoporous templates and sensing platforms

机译:大规模,环保,便捷地生产多功能阳极氧化铝:应用于纳米多孔模板和传感平台

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摘要

In this paper, we report on an efficient and eco-friendly approach to fabricate AAOs in oxalic acid electrolyte, which exhibits a relatively wide range of electrolyte temperatures for stable anodization. Our strategy consists of simultaneous multi-surfaces anodization (SMSA) for fabricating plural AAOs and direct detachment of those AAOs from an aluminum (Al) substrate by applying stair-like reverse biases (SRBs) in?the same electrolyte used for the SMSAs. A unit sequence including SMSA sequentially combined with SRBs-based detachment can be applied repeatedly to the same Al substrate for mass production of AAOs. Dimensional characteristics of AAOs were quantitatively controlled with respect to the electrolyte temperature as well as the number of applied sequences, and SRBs-based direct detaching characteristics depending on the AAO thickness were investigated as a function of the number of stairs in SRBs. The AAOs fabricated here were used as nanoporous templates for synthesizing π-conjugated polymer nanomaterials with various diameters, and their structural and optical characteristics were studied with respect to their physical dimensions. We also fabricated capacitive humidity sensors designed on interdigitated electrode structures with nanoporous AAOs, and discussed their superior device performances.
机译:在本文中,我们报告了一种在草酸电解质中制造AAO的有效且环保的方法,该方法在稳定的阳极氧化作用下具有相对较宽的电解质温度范围。我们的策略包括同时进行多表面阳极氧化(SMSA),以制造多个AAO,并通过在用于SMSA的同一电解液中施加阶梯状反向偏压(SRB),将这些AAO从铝(Al)基板上直接分离。可以将包括SMSA的顺序与基于SRB的分离顺序结合的单元序列重复应用于同一Al基板,以批量生产AAO。相对于电解液温度以及所施加序列的数量,对AAO的尺寸特征进行了定量控制,并且研究了取决于AAO厚度的基于SRB的直接分离特性与SRB中阶梯数的关系。此处制备的AAO被用作纳米孔模板,用于合成各种直径的π共轭聚合物纳米材料,并就其物理尺寸研究了其结构和光学特性。我们还制造了具有纳米多孔AAO的指状电极结构的电容式湿度传感器,并讨论了其优越的器件性能。

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