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层层膜的协同作用实现对反式白藜芦醇的高选择性和高灵敏度电化学检测。

Synergistic effects of layer-by-layer films for highly selective and sensitive electrochemical detection of trans-resveratrol.

机构信息

Hunan Engineering Laboratory for Preparation Technology of Polyvinyl Alcohol Fiber Material, Huaihua Key Laboratory for Preparation of Ceramics Materials and Devices, Huaihua University, Huaihua 418000, PR China; Key Laboratory of Research and Utilization of Ethnomedicinal Plant Resources of Hunan Province, Key Laboratory of Hunan Higher Education for Western Hunan Medicinal Plant and Ethnobotany, Huaihua University, Huaihua 418000, PR China.

Hunan Engineering Laboratory for Preparation Technology of Polyvinyl Alcohol Fiber Material, Huaihua Key Laboratory for Preparation of Ceramics Materials and Devices, Huaihua University, Huaihua 418000, PR China.

出版信息

Food Chem. 2021 Feb 15;338:127851. doi: 10.1016/j.foodchem.2020.127851. Epub 2020 Aug 16.

Abstract

Trans-resveratrol (TRA) possesses a variety of pharmacological activities, making important to explore simple, inexpensive, and reliable analytical methods for identification and quantification of it. We report on the synergistic effects originated from layer-by-layer films of graphene (Gr)-gold nanoparticles (Au) and molecularly imprinted polymers (MIPs) modified glassy carbon electrode (GCE) for electrochemical detection of TRA. To construct the TRA electrochemical sensor (GCE|Gr-Au/MIPs), the films of Gr-Au, MIPs were step by step formed onto GCE via in-situ and controllable electrodeposition and polymerization processes. The compositions, morphologies, and electrochemical properties of obtained films were investigated by various methods. Under the optimized experimental conditions, the electrochemical sensor showed superior performance toward selective and sensitive determination of TRA with K[Fe(CN)] as electrochemical signal probe. The electrochemical sensor was applied to determine TRA in real samples with good accuracy and recovery, verifying the broad and practical application prospects for foods and medicines analysis.

摘要

反式白藜芦醇(TRA)具有多种药理活性,因此探索简单、廉价、可靠的分析方法对其进行鉴定和定量非常重要。我们报告了基于层层石墨烯(Gr)-金纳米粒子(Au)和分子印迹聚合物(MIPs)修饰玻碳电极(GCE)的协同效应,用于 TRA 的电化学检测。为了构建 TRA 电化学传感器(GCE|Gr-Au/MIPs),通过原位和可控的电沉积和聚合过程,将 Gr-Au 和 MIPs 薄膜逐步形成在 GCE 上。通过各种方法研究了获得的薄膜的组成、形态和电化学性质。在优化的实验条件下,该电化学传感器对以 K[Fe(CN)]为电化学信号探针的 TRA 具有选择性和灵敏的测定性能。该电化学传感器已成功应用于实际样品中 TRA 的测定,具有良好的准确性和回收率,验证了其在食品和药品分析中的广泛实用前景。

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