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A nanoforest-based SERS sensor fabricated by Bosch process for multiplexed chemical detection

机译:通过博世(Bosch)工艺制造的基于纳米森林的SERS传感器,用于多重化学检测

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A new simple maskless fabrication method based on room temperature Bosh process was developed to fabricate silicon nanoforest. After being coated with a layer of Au, the Au-coated silicon nanoforest was converted into a surface-enhanced Raman spectroscopy (SERS) substrate. To further enhance SERS signals, the Au-coated silicon nanoforest was grafted with silver-plate nanoparticles (AgNPs). The SERS substrate was used to detect Escherichia coli as a model strain at 106 CFU/mL, and a Raman signal enhancement factor of ~106 was achieved without any optimization of the SERS substrate. Multiplexed detection was demonstrated through differentiating R6G and E. coli on the same substrate. Given the simplicity and low-cost of the preparation scheme, and the high enhancement efficiency of this nanoforest-based SERS substrate, it can be potentially used in the field of diagnostic microbiology for the label-free detection of bacterial and viral pathogens, and it is also suitable for detecting and analyzing mixtures of compounds to determine their compositions.
机译:开发了一种基于室温Bosh工艺的新型简单无掩模制造方法,以制造硅纳米林。在用Au涂层后,将Au涂层的硅纳米林转换为表面增强拉曼光谱(SERS)衬底。为了进一步增强SERS信号,将Au涂层的硅纳米林与镀银纳米颗粒(AgNPs)接枝。使用SERS底物以106 CFU / mL的水平检测大肠杆菌作为模型菌株,无需对SERS底物进行任何优化即可获得〜106的拉曼信号增强因子。通过区分同一底物上的R6G和大肠杆菌证明了多重检测。鉴于制备方案的简单性和低成本,以及这种基于纳米森林的SERS底物的高增强效率,它可以潜在地用于诊断微生物学领域,用于无标记地检测细菌和病毒病原体,并且也适用于检测和分析化合物的混合物以确定其组成。

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