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基于双模纳米传感器的食品着色剂柠檬黄检测用荧光碳点的简易水热合成与纯化。

Facile hydrothermal synthesis and purification of fluorescent carbon dots for food colorant tartrazine detection based on a dual-mode nanosensor.

机构信息

School of Chemistry and Chemical Engineering, Kunming University, Kunming, 650214, China.

Department of Stomatology, Yańan Hospital Affiliated to Kunming Medical University, Kunming, 650031, China.

出版信息

Anal Methods. 2022 Oct 27;14(41):4127-4132. doi: 10.1039/d2ay01140a.

Abstract

Colorant tartrazine is widely used in the food industry, but its long-term and excessive consumption is harmful to human health. Therefore, it is necessary to establish a sensitive detection method for tartrazine. Blue fluorescent carbon dots with L-arginine and -phenylenediamine as precursors, namely L-Arg/oPD-CDs, were prepared the hydrothermal method. Then, L-Arg/oPD-CDs were further purified by dialysis, thin layer chromatography and column chromatography. A dual-mode nanosensor based on fluorescent and UV absorption was successfully developed. Excellent linear ranges of 0-5 μM and 10-50 μM were obtained with a low detection limit of 42.3 nM based on fluorescence. A good linear range of 0-50 μM was obtained with a low detection limit of 130.15 nM based on UV absorption. The quenching mechanism of tartrazine towards L-Arg/oPD-CDs fluorescence was the inner filter effect. In addition, a dual-mode nanosensor was used for tartrazine determination in millet, maize flour, carbonated drink, and sugar samples. This study provides new insight into the detection of tartrazine by applying a dual-mode nanosensor.

摘要

食用色素柠檬黄广泛应用于食品工业,但长期过量食用会对人体健康造成危害。因此,有必要建立一种灵敏的柠檬黄检测方法。本研究以 L-精氨酸和 -苯二胺为前驱体,采用水热法制备了蓝色荧光碳点,即 L-Arg/oPD-CDs。然后,通过透析、薄层层析和柱层析对 L-Arg/oPD-CDs 进一步纯化。成功开发了基于荧光和紫外吸收的双模式纳米传感器。基于荧光,得到了 0-5 μM 和 10-50 μM 的良好线性范围,检测限低至 42.3 nM。基于紫外吸收,得到了 0-50 μM 的良好线性范围,检测限低至 130.15 nM。柠檬黄对 L-Arg/oPD-CDs 荧光的猝灭机制是内滤效应。此外,该双模式纳米传感器还用于小米、玉米粉、碳酸饮料和糖样中柠檬黄的测定。本研究为应用双模式纳米传感器检测柠檬黄提供了新的思路。

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