阳极氧化铝(AAO)膜的制备、表征及应用研究进展

S. Manzoor, M. W. Ashraf, S. Tayyaba, M. Khalid Hossain
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引用次数: 8

摘要

膜技术的进步和可控参数膜的发展导致了多孔膜的出现。这些膜可以用不同的方法形成,在科学和技术上有许多应用。在这方面铝的阳极氧化是一种电合成工艺,通过氧化改变金属表面以提供阳极氧化层。这一过程形成了一个自协调的、特殊的圆形和空心孔隙簇,孔隙宽度、周期性和厚度都是可控的。讨论了屏障型和多孔型膜的分类以及制备膜的不同方法。在初步介绍之后,本文对阳极氧化工艺进行了简要概述。这使得阳极氧化铝(AAO)层可以用作各种纳米技术应用的格式,而不需要昂贵的光刻系统。本文综述了AAO膜的研究现状。对应用中的AAO膜进行了全面的分析;过滤,传感器,药物输送,各种纳米结构的模板辅助生长。它们在纳米技术中的多种用途也被讨论,用于收集纳米材料和器件或将它们结合到特定的应用中,例如纳米电子器件、通道层和临床平台组织设计。从这篇综述中,强调了通过改变AAO的几何参数可以实现AAO性能的特定增强。没有一篇综述论文详细讨论了AAO的应用前景和挑战。此外,对研究界来说,比较文献中报道的结果也是一个挑战。本文提供了表格,以便与膜参数的报道应用进行比较。本文综述了AAO的形成、性质、应用,并客观地分析了AAO的应用前景和面临的挑战。这一前景吸引着研究人员进一步推动具有功能化和控制几何参数的独特膜的开发,并验证AAO膜在纳米技术和器件中的可行性。
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Recent Progress of Fabrication, Characterization, and Applications of Anodic Aluminum Oxide (AAO) Membrane: A Review
The progress of membrane technology with the development of membranes with controlled parameters led to porous membranes. These membranes can be formed using different methods and have numerous applications in science and technology. Anodization of aluminum in this aspect is an electro-synthetic process that changes the surface of the metal through oxidation to deliver an anodic oxide layer. This process results in a self-coordinated, exceptional cluster of round and hollow formed pores with controllable pore widths, periodicity, and thickness. Categorization in barrier type and porous type films, and different methods for the preparation of membranes, have been discussed. After the initial introduction, the paper proceeds with a brief overview of anodizing process. That engages anodic aluminum oxide (AAO) layers to be used as formats in various nanotechnology applications without the necessity for expensive lithographical systems. This review article surveys the current status of the investigation on AAO membranes. A comprehensive analysis is performed on AAO membranes in applications; filtration, sensors, drug delivery, template-assisted growth of various nanostructures. Their multiple usages in nanotechnology have also been discussed to gather nanomaterials and devices or unite them into specific applications, such as nano-electronic gadgets, channel layers, and clinical platforms tissue designing. From this review, the fact that the specified enhancement of properties of AAO can be done by varying geometric parameters of AAO has been highlighted. No review paper focused on a detailed discussion of applications of AAO with prospects and challenges. Also, it is a challenge for the research community to compare results reported in the literature. This paper provides tables for easy comparison of reported applications with membrane parameters. This review paper represents the formation, properties, applications with objective consideration of the prospects and challenges of AAO applications. The prospects may appeal to researchers to promote the development of unique membranes with functionalization and controlled geometric parameters and check the feasibility of the AAO membranes in nanotechnology and devices.
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