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使用氧化锆(ZrO)@多壁碳纳米管修饰的丝网印刷电极选择性测定水和食品样品中的亚硝酸盐。

Selective determination of nitrite in water and food samples using zirconium oxide (ZrO)@MWCNTs modified screen printed electrode.

作者信息

Rajab Nadeen, Ibrahim Hosny, Hassan Rabeay Y A, Youssef Ahmed F A

机构信息

University of Science and Technology (UST), Zewail City of Science and Technology Giza 12578 Egypt

Chemistry Department, Faculty of Science, Cairo University Giza 12613 Egypt.

出版信息

RSC Adv. 2023 Jul 17;13(31):21259-21270. doi: 10.1039/d3ra03448h. eCollection 2023 Jul 12.

Abstract

Nitrite ions are being used in different forms as food preservatives acting as flavor enhancers or coloring agents for food products. However, continuous ingestion of nitrite may have severe health implications due to its mutagenic and carcinogenic effects. Thus, this study constructed an electrochemical assay using disposable nano-sensor chip ZrO@MWCNTs screen printed electrodes (SPE) for the rapid, selective, and sensitive determination of nitrite in food and water samples. As a sensing platform, the use of nanomaterials, including metal oxide nanostructures and carbon nanotubes, exhibited a superior electrocatalytic activity and conductivity. Morphological, structural, and electrochemical analyses were performed using electron microscopy (SEM and TEM), Fourier-transform infrared (FTIR) spectroscopy, electrochemical impedance spectroscopy (EIS), cyclic voltammetry (CV) and chronoamperometry (CA). Accordingly, a wide dynamic linear range (5.0 μM to 100 μM) was obtained with a limit of detection of 0.94 μM by the chronoamperometric technique. In addition, the sensor's selectivity was tested when several non-target species were exposed to the sensor chips while no obvious electrochemical signals were generated when the nitrite ions were not present. Eventually, real food and water sample analysis was conducted, and a high recovery was achieved.

摘要

亚硝酸根离子正以不同形式用作食品防腐剂,充当食品的风味增强剂或着色剂。然而,由于其诱变和致癌作用,持续摄入亚硝酸盐可能对健康产生严重影响。因此,本研究构建了一种使用一次性纳米传感器芯片ZrO@MWCNTs丝网印刷电极(SPE)的电化学检测方法,用于快速、选择性和灵敏地测定食品和水样中的亚硝酸盐。作为传感平台,使用包括金属氧化物纳米结构和碳纳米管在内的纳米材料表现出优异的电催化活性和导电性。使用电子显微镜(SEM和TEM)、傅里叶变换红外(FTIR)光谱、电化学阻抗谱(EIS)、循环伏安法(CV)和计时电流法(CA)进行了形态、结构和电化学分析。据此,通过计时电流法获得了5.0 μM至100 μM的宽动态线性范围,检测限为0.94 μM。此外,当几种非目标物质暴露于传感器芯片时测试了传感器的选择性,而在不存在亚硝酸根离子时未产生明显的电化学信号。最终,进行了实际食品和水样分析,并实现了高回收率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/718e/10350638/def88d04e020/d3ra03448h-s1.jpg

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