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Large Scale Fabrication of Ordered Gold Nanoparticle-Epoxy Surface Nanocomposites and Their Application as Label-Free Plasmonic DNA Biosensors

机译:有序金纳米粒子环氧树脂表面纳米复合材料的大规模制造及其作为无标签等离子体DNA生物传感器的应用

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摘要

A robust and scalable technology to fabricate ordered gold nanoparticle arrangements on epoxy substrates is presented. The nanoparticles are synthesized by solid-state dewetting on nanobowled aluminum templates, which are prepared by the selective chemical etching of porous anodic alumina (PAA) grown on an aluminum sheet with controlled anodic oxidation. This flexible fabrication technology provides proper control over the nanoparticle size, shape, and interparticle distance over a large surface area (several cm(2)), which enables the fine-tuning and optimization of their plasmonic absorption spectra for LSPR and SERS applications between 535 and 625 nm. The nanoparticles are transferred to the surface of epoxy substrates, which are subsequently selectively etched. The resulting nanomushrooms arrangements consist of ordered epoxy nanopillars with flat, disk-shaped nanoparticles on top, and their bulk refractive index sensitivity is between 83 and 108 nm RIU-1. Label-free DNA detection is successfully demonstrated with the sensors by using a 20 base pair long specific DNA sequence from the parasite Giardia lamblia. A red-shift of 6.6 nm in the LSPR absorbance spectrum was detected after the 2 h hybridization with 1 pM target DNA, and the achievable LOD was around 5 nM. The reported plasmonic sensor is one of the first surface AuNP/polymer nanocomposites ever reported for the successful label-free detection of DNA.
机译:提出了一种稳健和可伸缩的技术,用于制造环氧基质上的有序金纳米粒子布置。通过在纳米管铝模板上通过固态脱模合成纳米颗粒,其通过在具有受控氧化氧化的铝板上生长的多孔阳极氧化铝(PAA)的选择性化学蚀刻来制备。这种柔性制造技术在大表面积(几厘米(2))上的纳米颗粒尺寸,形状和颗粒间距离提供了适当的控制,这使得它们的质子吸收光谱能够为LSPR和SERS应用的微调和优化在535之间和625纳米。将纳米颗粒转移到环氧基质的表面上,随后选择性地蚀刻。由此产生的纳米蛹排列由有序的环氧纳米粒子组成,顶部具有平坦的圆盘状纳米颗粒,其本体折射率敏感性在83和108nm的Riu-1之间。通过使用来自寄生虫Giardia Lamblia的20个基对长特异性DNA序列,通过传感器成功地证明了无标记的DNA检测。在用1PM靶DNA杂交2 H杂交后检测到6.6nm的红色偏移,并且可实现的LOD约为5nm。报告的等离子体传感器是迄今为止迄今为止的DNA无标记检测的第一表面AUNP /聚合物纳米复合材料之一。

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