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采用 SMM/Au@ZIF-67 电化学传感器测定不同食品样品中的香草醛。

Determination of vanillin in different food samples by using SMM/Au@ZIF-67 electrochemical sensor.

机构信息

Institute for Micromanufacturing, Louisiana Tech University, Ruston, LA, 71270, USA.

Center for Biomedical Engineering and Rehabilitation Sciences, Louisiana Tech University, PO Box 10157, Ruston, LA, 71272, USA.

出版信息

Sci Rep. 2023 Oct 20;13(1):17907. doi: 10.1038/s41598-023-45342-6.

Abstract

Vanillin is a popular flavoring agent in many food products. Simple, fast, and reliable quantification of this compound is crucial for the food industry. In this work, we have developed a new electrochemical sensor for accurate detection of vanillin in various real samples. The composite electrode was made of sodium montmorillonite nanoclay (SMM) and gold nanoparticles modified ZIF-67 (Au@ZIF-67), in which SMM contributes to the large adsorption capacity of the analyte, ZIF-67 and SMM supply more sensing active sites, and gold nanoparticles provide high electrical conductivity. The sensing electrode was comprehensively characterized using Brunauer-Emmett-Teller, EDS, XRD, SEM, FTIR, and TEM, and its electrochemical behavior for determination of vanillin including the electrooxidation mechanism of vanillin and different parameters such as scan rate and pH value was investigated. The result revealed that a two electron-two proton process was involved in the electrooxidation of vanillin, which takes place more readily due to the lower potential on the surface of SMM/Au@ZIF-67/carbon paste electrode. The new composite electrode was also more sensitive to vanillin detection with an anodic peak current almost 2.6 times more than that of the bare electrode. A linear sensing concentration range was established between 1 and 1200 nM with a detection limit of 0. 3 nM and a limit of quantitation of 1 nM. For real samples, the sensor demonstrated excellent recovery rates and reliability that was comparable to the standard high-performance liquid chromatography method.

摘要

香草醛是许多食品产品中常用的调味剂。准确检测这种化合物对于食品工业至关重要。在这项工作中,我们开发了一种新的电化学传感器,用于准确检测各种实际样品中的香草醛。复合电极由钠蒙脱石纳米粘土(SMM)和金纳米粒子修饰的 ZIF-67(Au@ZIF-67)制成,其中 SMM 有助于分析物的大容量吸附,ZIF-67 和 SMM 提供更多的传感活性位点,金纳米粒子提供高导电性。使用 Brunauer-Emmett-Teller、EDS、XRD、SEM、FTIR 和 TEM 对传感电极进行了综合表征,并研究了其用于测定香草醛的电化学行为,包括香草醛的电氧化机制以及不同参数,如扫描速率和 pH 值。结果表明,香草醛的电氧化涉及两个电子两个质子过程,由于 SMM/Au@ZIF-67/碳糊电极表面的电位较低,因此更容易发生。新型复合电极对香草醛的检测也更敏感,其阳极峰电流几乎是裸电极的 2.6 倍。建立了在 1 到 1200 nM 之间的线性感应浓度范围,检测限为 0.3 nM,定量限为 1 nM。对于实际样品,该传感器表现出出色的回收率和可靠性,可与标准高效液相色谱法相媲美。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb64/10589296/5b3938534f08/41598_2023_45342_Fig1_HTML.jpg

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