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基于格里斯反应的试纸条用于亚硝酸根的比色/荧光/SERS 三重传感。

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

机构信息

School of Chemical and Environmental Engineering, Shanghai Institute of Technology, 100 Haiquan Road, Shanghai 201418, PR China.

School of Chemical and Environmental Engineering, Shanghai Institute of Technology, 100 Haiquan Road, Shanghai 201418, PR China.

出版信息

Biosens Bioelectron. 2018 Jan 15;99:389-398. doi: 10.1016/j.bios.2017.08.008. Epub 2017 Aug 8.

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 human urine and meat products, as well as provides a strategy for designing multi-mode sensing platform for various applications.

摘要

基于格氏反应调控的金纳米棒(GNRs)-偶氮金纳米颗粒(GNPs)(GNRs-Azo-GNPs)组装,本研究展示了一种用于亚硝酸根比色/荧光/表面增强拉曼散射(SERS)三模式传感的新策略。首先通过 Au-S 和 Au-N 键分别合成了对氨基苯硫酚(PATP)封端的金纳米棒(GNRs@PATP)和 1,8-二氨基萘(DAP)修饰的金纳米颗粒(GNPs@DAP)。在 365nm 激发下,GNRs-GNPs(GNRs@PATP 和 GNPs@DAP)的分散体发出青色荧光。接下来,将亚硝酸根加入到 GNRs-GNPs 中会诱导 GNRs-Azo-GNPs 组装的形成,导致颜色增强和荧光减弱。因此,GNRs-Azo-GNPs 组装不仅可以用作亚硝酸根从橙黄色变为紫色的肉眼指示剂,而且由于偶氮部分和 DAP 之间的荧光共振能量转移(FRET),还可以用作高度选择性的“荧光猝灭”探针。比色法和荧光法检测亚硝酸根的检出限(LOD)分别为 0.05μM 和 0.01μM。同时,GNRs-Azo-GNPs 组装具有可控的核-卫星纳米结构,能够实现现场 SERS 检测亚硝酸根,LOD 为 0.8nM。更重要的是,GNRs-GNPs 传感系统不仅可以用作基于纸张的测试条,用于现场快速筛选具有高灵敏度和选择性的亚硝酸根,还可以用作 SERS 基底,用于可靠定量分析亚硝酸根。本研究为现场可视化检测人尿和肉类产品中的亚硝酸根提供了一种新方法,并为设计用于各种应用的多模式传感平台提供了一种策略。

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