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Interferometric nanoporous anodic alumina photonic coatings for optical sensing

机译:干涉纳米多孔阳极氧化铝光子涂层的光学传感

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摘要

Herein, we present a systematic study on the development, optical optimization and sensing applicability of colored photonic coatings based on nanoporous anodic alumina films grown on aluminum substrates. These optical nanostructures, so-called distributed Bragg reflectors (NAA-DBRs), are fabricated by galvanostatic pulse anodization process, in which the current density is altered in a periodic manner in order to engineer the effective medium of the resulting photonic coatings. As-prepared NAA-DBR photonic coatings present brilliant interference colors on the surface of aluminum, which can be tuned at will within the UV-visible spectrum by means of the anodization profile. A broad library of NAA-DBR colors is produced by means of different anodization profiles. Then, the effective medium of these NAA-DBR photonic coatings is systematically assessed in terms of optical sensitivity, low limit of detection and linearity by reflectometric interference spectroscopy (RIfS) in order to optimize their nanoporous structure toward optical sensors with enhanced sensing performance. Finally, we demonstrate the applicability of these photonic nanostructures as optical platforms by selectively detecting gold(III) ions in aqueous solutions. The obtained results reveal that optimized NAA-DBR photonic coatings can achieve an outstanding sensing performance for gold(III) ions, with a sensitivity of 22.16 nm mu M-1, a low limit of detection of 0.156 mu M (i.e. 30.7 ppb) and excellent linearity within the working range (0.9983).
机译:在此,我们提出一个系统的研究发展,光学优化和感应适用性的彩色光涂料在纳米多孔阳极氧化铝薄膜生长铝基板。纳米结构,所谓的分布式布拉格反射镜(NAA-DBRs),是捏造出来的恒电流脉冲阳极处理过程,电流密度是在周期性改变方式以工程师的有效媒介产生的光子涂料。NAA-DBR光子涂料辉煌干扰颜色表面的铝,可调谐紫外可见随意光谱通过阳极处理概要文件。广泛的NAA-DBR颜色是由图书馆意味着不同的阳极处理配置文件。这些NAA-DBR光子的有效媒介涂料系统的评估光学灵敏度、低检测极限由reflectometric线性干扰光谱学(rif)为了优化纳米多孔结构对光学传感器增强传感性能。证明这些光子的适用性纳米结构的光学平台选择性地检测黄金(III)离子在水解决方案。优化NAA-DBR光子涂料可以实现一位杰出的传感性能对黄金(3)离子的敏感性为22.16 nmμm - 1,检测极限低0.156μM(即30.7含量和优秀的线性内工作范围(0.9983)。

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