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Nanoporous Anodic Alumina Platforms: Engineered Surface Chemistry and Structure for Optical Sensing Applications

机译:纳米多孔阳极氧化铝平台:用于光学传感应用的工程表面化学和结构

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摘要

Electrochemical anodization of pure aluminum enables the growth of highly ordered nanoporous anodic alumina (NAA) structures. This has made NAA one of the most popular nanomaterials with applications including molecular separation, catalysis, photonics, optoelectronics, sensing, drug delivery, and template synthesis. Over the past decades, the ability to engineer the structure and surface chemistry of NAA and its optical properties has led to the establishment of distinctive photonic structures that can be explored for developing low-cost, portable, rapid-response and highly sensitive sensing devices in combination with surface plasmon resonance (SPR) and reflective interference spectroscopy (RIfS) techniques. This review article highlights the recent advances on fabrication, surface modification and structural engineering of NAA and its application and performance as a platform for SPR- and RIfS-based sensing and biosensing devices.
机译:纯铝的电化学阳极氧化可实现高度有序的纳米多孔阳极氧化铝(NAA)结构的生长。这使NAA成为最受欢迎的纳米材料之一,其应用包括分子分离,催化,光子学,光电子学,传感,药物递送和模板合成。在过去的几十年中,通过对NAA的结构和表面化学及其光学特性进行工程设计的能力,导致建立了独特的光子结构,可以探索出这种光子结构,以开发低成本,便携式,快速响应和高度灵敏的传感设备。与表面等离子体激元共振(SPR)和反射干涉光谱(RIfS)技术相结合。这篇评论文章重点介绍了NAA在制造,表面改性和结构工程上的最新进展及其作为基于SPR和RIfS的传感和生物传感设备的平台的应用和性能。

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