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Nanoporous photonic crystals with tailored surface chemistry for ionic copper sensing

机译:具有定制表面化学的纳米孔光子晶体,用于离子铜传感

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We present a study on optical and surface chemistry engineering of nanoporous photonic crystals as sensing platforms for detection of ionic copper. The optical sensing system combines glutaraldehyde-crosslinked double-layered polyethyleneimine (PEI-GA-PEI)-functionalized nanoporous anodic alumina gradient-index filters (NAA-GIFs) with reflection spectroscopy for label-free, selective detection of ionic copper in water matrices. The spectral position of the photonic stopband (PSB) of PEI-GA-PEI-functionalized NAA-GIFs is tuned across the visible-NIR spectral region to assess the impact of this optical parameter on the sensing performance of the system. Spectral shifts in the characteristic PSB (Delta lambda(PSB)) of PEI-GA-PEI-functionalized NAA-GIFs upon exposure to analytical solutions of ionic copper are used as a sensing parameter. Shifts in Delta lambda(PSB) of these photonic crystals are monitored in real-time under dynamic flow conditions. Calibration of the sensing system with analytical solutions of ionic copper from 0.1 to 100 mM shows a dual sensing regime, at low (from 1 to 10 mM) and high (from 10 to 100 mM) concentrations, which is associated with conformational changes of the PEI-GA-PEI functional layer. The binding mechanism of Cu2+ in PEI-GA-PEI-modified NAA-GIFs follows a Freundlich isotherm model. The performance of the PEI-GA-PEI-NAA-GIFs for real-life applications is demonstrated using environmental water. The system shows excellent correlation in both environmental and analytical water solutions. This study provides new opportunities to engineer portable optical sensing systems with tailor-designed features to detect ionic copper for environmental applications.
机译:我们展示了纳米多孔光子晶体的光学和表面化学工程作为检测离子铜的感测平台。光学传感系统将戊二醛交联的双层聚乙烯亚胺(PEI-GA-PEI) - 官能化纳米孔阳极氧化铝梯度 - 指数过滤器(NAA-GIF)与反射光谱合并,用于无标记光谱,选择性地检测水基质中的离子铜。 PEI-GA-PEI-官能化NAA-GIFS的光子阻带(PSB)的光谱位置被调谐,以评估该光学参数对系统的感测性能的影响。在暴露于离子铜的分析溶液时,PEI-GA-PEI-官能化NAA-GIF的特性PSB(Delta Lambda(PSB))的光谱移位用作感测参数。在动态流动条件下实时监测这些光子晶体的Delta Lambda(PSB)的换档。具有0.1至100mm的离子铜的分析溶液的传感系统的校准显示了双传感状态,低(从1至10mm),高(10至100mm)浓度,这与构象变化相关PEI-GA-PEI功能层。 Cu2 +在PEI-GA-PEI改性的NAA-GIF中的结合机制遵循Freundlich等温模型。使用环境水证明了对现实寿命应用的PEI-GA-PEI-NAA-GIF的性能。该系统在环境和分析水溶液中显示出优异的相关性。本研究为工程设计具有量身定制的光学传感系统提供了新的机会,用于检测环境应用的离子铜。

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