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Rational Design of Photonic Dust from Nanoporous Anodic Alumina Films: A Versatile Photonic Nanotool for Visual Sensing

机译:纳米多孔阳极氧化铝薄膜中光子粉尘的合理设计:用于视觉传感的多功能光子纳米工具

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摘要

Herein, we present a systematic study on the development, optimisation and applicability of interferometrically coloured distributed Bragg reflectors based on nanoporous anodic alumina (NAA-DBRs) in the form of films and nanoporous microparticles as visual/colorimetric analytical tools. Firstly, we synthesise a complete palette of NAA-DBRs by galvanostatic pulse anodisation approach, in which the current density is altered in a periodic fashion in order to engineer the effective medium of the resulting photonic films in depth. NAA-DBR photonic films feature vivid colours that can be tuned across the UV-visible-NIR spectrum by structural engineering. Secondly, the effective medium of the resulting photonic films is assessed systematically by visual analysis and reflectometric interference spectroscopy (RIfS) in order to establish the most optimal nanoporous platforms to develop visual/colorimetric tools. Then, we demonstrate the applicability of NAA-DBR photonic films as a chemically selective sensing platform for visual detection of mercury(II) ions. Finally, we generate a new nanomaterial, so-called photonic dust, by breaking down NAA-DBRs films into nanoporous microparticles. The resulting microparticles (μP-NAA-DBRs) display vivid colours and are sensitive towards changes in their effective medium, opening new opportunities for developing advanced photonic nanotools for a broad range of applications.
机译:本文中,我们对基于纳米多孔阳极氧化铝(NAA-DBR)的干涉色有色分布式布拉格反射器的开发,优化和适用性进行了系统研究,该膜以薄膜和纳米多孔微粒的形式用作视觉/比色分析工具。首先,我们通过恒电流脉冲阳极氧化方法合成了完整的NAA-DBR调色板,其中电流密度以周期性的方式改变,以便深度工程化所得光子膜的有效介质。 NAA-DBR光子膜具有鲜艳的色彩,可以通过结构工程在整个UV-NIR光谱范围内进行调整。其次,通过视觉分析和反射干涉光谱法(RIfS)系统评估所得光子膜的有效介质,以便建立开发视觉/比色工具的最佳纳米孔平台。然后,我们证明了NAA-DBR光子膜作为化学选择性感测平台用于视觉检测汞(II)离子的适用性。最后,我们将NAA-DBRs薄膜分解为纳米多孔微粒,从而产生了一种新的纳米材料,即所谓的光子尘。所得的微粒(μP-NAA-DBR)显示出鲜艳的颜色,并且对其有效介质的变化敏感,从而为开发用于广泛应用的高级光子纳米工具开辟了新机遇。

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