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基于双发射碳点的免修饰比色纳米探针用于食品样品中亚硝酸盐的测定。

Modification-Free Fabricating Ratiometric Nanoprobe Based on Dual-Emissive Carbon Dots for Nitrite Determination in Food Samples.

出版信息

J Agric Food Chem. 2019 Apr 3;67(13):3826-3836. doi: 10.1021/acs.jafc.9b00024. Epub 2019 Mar 14.

DOI:10.1021/acs.jafc.9b00024
PMID:30848591
Abstract

Great challenges still exist for facilely fabricating ratiometric fluorescent nanoprobes. Fortunately, the appearance of dual-emissive carbon dots (CDs) offers a glimmer of hope for the fabrication of modification-free ratiometric nanoprobe. The chemical and electronic structure characteristics of the dual-emissive CDs might be modulated by conjugated structures of carbon sources and the doped nitrogen and sulfur atoms, and the surface state also contributed to the fluorescence properties via surface functional groups. Herein, we report a one-pot strategy for simultaneous preparation of two kinds of CDs named RYDE CDs and RODE CDs, showing dual-emissive fluorescent peaks with long wavelength by 2,3-diaminobenzoic acid hydrochloride for the first time. Notably, trace nitrite determination with high sensitivity and selectivity was realized for the first time based on the modification-free ratiometric fluorescent nanoprobe fabricated rapidly and directly by the as-prepared RYDE CDs at constant room temperature (20 °C). Under the optimal conditions, the limit of detection for nitrite was 31.61 nM, with a wide concentration linear range of 0.1-100 μM. Furthermore, this ratiometric nanoprobe was successfully applied for nitrite analysis in bacon, sausage, pickle, and milk samples. Additionally, the nanoprobe was also capable of visually monitoring temperature fluctuations and cell imaging.

摘要

制备比率型荧光纳米探针仍然面临巨大挑战。幸运的是,双发射碳点(CDs)的出现为制备无需修饰的比率型纳米探针带来了一线希望。双发射 CDs 的化学和电子结构特性可以通过碳源的共轭结构和掺杂的氮、硫原子进行调节,表面状态也可以通过表面官能团影响荧光性质。本文首次报道了一种一步法策略,可同时制备两种 CDs,分别命名为 RYDE CDs 和 RODE CDs,它们以盐酸 2,3-二氨基苯甲酸为长波长荧光发射峰,表现出双发射荧光特性。值得注意的是,首次基于快速、直接制备的 RYDE CDs,无需修饰即可制备比率型荧光纳米探针,实现了对痕量亚硝酸盐的高灵敏度和选择性检测。在最佳条件下,亚硝酸盐的检出限为 31.61 nM,浓度线性范围为 0.1-100 μM。此外,该比率型纳米探针还成功应用于培根、香肠、泡菜和牛奶样品中亚硝酸盐的分析。此外,该纳米探针还能够进行温度波动的可视化监测和细胞成像。

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