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Griess reaction-based paper strip for colorimetric/fluorescent/SERS triple sensing of nitrite

机译:用于比色/荧光/ SERS的亚硝酸盐三重传感的Griess反应的纸条

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Abstract This study demonstrates a novel strategy for colorimetric/fluorescent/surface enhanced Raman scattering (SERS) triple-mode sensing of nitrite based on Griess reaction modulated gold nanorods (GNRs)-Azo-gold nanoparticles (GNPs) (GNRs-Azo-GNPs) assembly. The p-aminothiophenol (PATP)-capped GNRs (GNRs@PATP) and 1,8-diaminonaphthalene (DAP)-modified GNPs (GNPs@DAP) are first synthesized through Au–S and Au–N bonds, respectively. Upon being excited at 365nm, the dispersion of GNRs-GNPs (GNRs@PATP and GNPs@DAP) emits cyan fluorescence. Next, the addition of nitrite into the GNRs-GNPs induces the formation of GNRs-Azo-GNPs assembly, resulting in the enhancement of color and decrease of fluorescence. Therefore, the GNRs-Azo-GNPs assembly can not only be used as a naked-eye indicator of nitrite changed from orange-yellow to purple, but also as a highly selective ‘‘fluorescence quenching’’ probe due to the fluorescence resonance energy transfer (FRET) between azo-moiety and DAP. The limit of detection (LOD) for nitrite is 0.05μM by colorimetry and 0.01μM by fluorescence. Meanwhile, the GNRs-Azo-GNPs assembly possesses controllable core–satellites nanostructures and enables on-field SERS detection of nitrite with the LOD of 0.8nM. More importantly, the GNRs-GNPs sensing system can not only be used as a paper-based test strip for on-site fast screening of nitrite with a high sensitivity and selectivity, but also as a SERS substrate for reliable quantitative analysis of nitrite. This study offers a new method for on-site visual detection of nitrite in huma
机译:<![cdata [ 抽象 本研究表明了基于GRIESS反应调制的金的亚硝酸盐的比色/荧光/表面增强拉曼散射(SERS)三维模式感测的新策略纳米棒(GNRS) - 佐剂 - 金纳米颗粒(GNPS)(GNRS-AZO-GNPS)组件。 P - 氨基酚(Patp) - 封闭的GNR(GNRS @ Patp)和1,8-二氨基萘(DAP) - 通过AU-S合成首先合成和au-n键。在365 nm时,GNRS-GNPS(GNRS @ PATP和GNPS @ DAP)的分散发射青色荧光。接下来,将亚硝酸盐添加到GNRS-GNPS中诱导GNRS-AZO-GNPS组件的形成,导致颜色的增强和荧光的降低。因此,GNRS-AZO-GNPS组件不仅可以用作亚硝酸盐的裸眼指示器从橙黄色变为紫色,而且由于荧光共振能量转移,作为高选择性的“荧光猝灭”探针(FRET)偶氮部分和DAP之间。亚硝酸盐的检测极限为0.05 μm,通过荧光通过荧光和0.01 μm。同时,GNRS-AZO-GNPS组件具有可控的芯卫星纳米结构,并使亚硝酸盐的现场SERs检测为0.8 Nm。更重要的是,GNRS-GNPS传感系统不仅可以用作基于纸的测试条,用于现场快速筛选亚硝酸盐,具有高灵敏度和选择性,还可以作为亚硝酸盐可靠定量分析的SERS基板。本研究提供了一种新方法,用于在HUMA中现场视觉检测亚硝酸盐

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