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使用发蓝光的铜纳米簇选择性测定水溶液中的鞣花酸。

Selective determination of ellagic acid in aqueous solution using blue-green emissive copper nanoclusters.

机构信息

College of Chemical Engineering, Hubei University of Arts and Science, Xiangyang, 441053, Hubei Province, P.R. China.

College of Chemical Engineering, Hubei University of Arts and Science, Xiangyang, 441053, Hubei Province, P.R. China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2023 Jul 5;295:122597. doi: 10.1016/j.saa.2023.122597. Epub 2023 Mar 10.

Abstract

Development of beneficial sensors to analyze ellagic acid concentrations is of great importance for food safety and human health. Herein, a facile and fast fluorescent probe was carried out for the excellently selective and sensitive measurement of ellagic acid in real samples through histidine protected copper nanoclusters (histidine@Cu NCs) as a nanosensor. This as-developed histidine@Cu NCs were performed through UV-vis absorption spectroscopy, fluorescence spectroscopy, transmission electron microscopy, Fourier-transform infrared spectroscopy, X-ray photoelectron spectroscopy and fluorescence lifetime analysis. The TEM image revealed that this nanomaterial had spherical features with the average diameter of 2.5 ± 0.05 nm. The blue-green fluorescence of this Cu NCs was found under the UV light. Meanwhile, the maximum excitation and emission wavelength were located at 387 nm and 488 nm. After addition of ellagic acid, the fluorescence of histidine@Cu NCs was slowly weakened with excellent linear range of 0.5-300 μM and detection limit of 0.077 μM. The fluorescence weakening mechanism of this nanosensor were attributed to the inner filter effect (IFE) and static quenching. Finally, this as-established analysis platform was successfully employed to measure ellagic acid in real samples.

摘要

开发有益的传感器来分析鞣花酸浓度对于食品安全和人类健康非常重要。在此,通过组氨酸保护的铜纳米簇(histidine@Cu NCs)作为纳米传感器,进行了一种简便、快速的荧光探针,用于在实际样品中对鞣花酸进行极好的选择性和灵敏的测量。该开发的 histidine@Cu NCs 通过紫外-可见吸收光谱、荧光光谱、透射电子显微镜、傅里叶变换红外光谱、X 射线光电子能谱和荧光寿命分析进行了研究。TEM 图像显示该纳米材料具有 2.5±0.05nm 的平均直径的球形特征。该 Cu NCs 在紫外光下呈现蓝绿色荧光。同时,最大激发和发射波长分别位于 387nm 和 488nm。加入鞣花酸后,histidine@Cu NCs 的荧光缓慢减弱,具有 0.5-300μM 的优异线性范围和 0.077μM 的检测限。该纳米传感器的荧光减弱机制归因于内滤效应(IFE)和静态猝灭。最后,该建立的分析平台成功用于测量实际样品中的鞣花酸。

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