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基于超薄二氧化硅包覆银纳米立方体和花状氧化铝包覆刻蚀铝夹层结构的等离子体耦合基底用于尿液中生物标志物的灵敏检测。

A Plasmonic Coupling Substrate Based on Sandwich Structure of Ultrathin Silica-Coated Silver Nanocubes and Flower-Like Alumina-Coated Etched Aluminum for Sensitive Detection of Biomarkers in Urine.

机构信息

Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei, 106, Taiwan.

Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, Taipei, 106, Taiwan.

出版信息

Adv Healthc Mater. 2017 May;6(10). doi: 10.1002/adhm.201601290. Epub 2017 Feb 2.

DOI:10.1002/adhm.201601290
PMID:28152271
Abstract

Interactions between substrate and plasmonic nanostructures can give rise to unique optical properties and influence performance in plasmonic biosensing applications. In this study, a substrate with low refractive index and roughness based on flower-like alumina-coated etched aluminum foil (f-Al O /e-Al) has been fabricated. Silver@silica (Ag@SiO ) nanocubes (NCs) assemble in an edge-edge configuration when deposited on this substrate. The rough surface texture of f-Al O /e-Al provides a pathway for coupling of incident light to surface plasmons. The Ag@SiO /f-Al O /e-Al substrate exhibits a coupling efficiency of laser light sources into surface plasmon hotspots for both surface-enhanced Raman scattering (SERS) and metal-enhanced photoluminescence (MEPL). Moreover, the shelf life of this substrate is significantly improved due to a reduction in oxygen diffusion rate mediated by the ultrathin silica spacer and the flower-like Al O dielectric layer. Creatinine and flavin adenine dinucleotide are biomolecules present in human blood and urine. With advanced label-free SERS and MEPL techniques, it is possible to detect these biomarkers in urine, allowing cheap, noninvasive, yet sensitive analysis. The approach explored in this work can be developed into a powerful encoding tool for high-throughput bioanalysis.

摘要

基底与等离子体纳米结构的相互作用可以产生独特的光学性质,并影响等离子体生物传感应用中的性能。在这项研究中,制备了一种基于花状氧化铝涂覆的刻蚀铝箔(f-Al O /e-Al)的低折射率和低粗糙度基底。当银@二氧化硅(Ag@SiO )纳米立方体(NCs)沉积在该基底上时,它们以边缘到边缘的方式组装。f-Al O /e-Al 的粗糙表面纹理为入射光与表面等离激元的耦合提供了途径。Ag@SiO /f-Al O /e-Al 基底表现出将激光光源耦合到表面等离激元热点的效率,用于表面增强拉曼散射(SERS)和金属增强光致发光(MEPL)。此外,由于超薄二氧化硅间隔层和花状 Al O 介电层介导的氧扩散率降低,该基底的保质期显著延长。肌酐和黄素腺嘌呤二核苷酸是存在于人体血液和尿液中的生物分子。通过先进的无标记 SERS 和 MEPL 技术,可以在尿液中检测到这些生物标志物,从而实现廉价、非侵入性但敏感的分析。这项工作中探索的方法可以开发成一种用于高通量生物分析的强大编码工具。

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