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一种用于检测抗氧化剂丁基羟基茴香醚(BHA)的新型电化学检测方法:基于镍铁氧体@石墨烯纳米复合材料的BHA印迹聚合物及其应用

A novel electrochemical detection method for butylated hydroxyanisole (BHA) as an antioxidant: a BHA imprinted polymer based on a nickel ferrite@graphene nanocomposite and its application.

作者信息

Yola Bahar Bankoğlu, Bekerecioğlu Sena, Polat İlknur, Atar Necip, Yola Mehmet Lütfi

机构信息

Gaziantep Islam Science and Technology University, Faculty of Engineering and Natural Sciences, Department of Engineering Basic Sciences, Gaziantep, Turkey.

Hasan Kalyoncu University, Faculty of Health Sciences, Department of Nutrition and Dietetics, Gaziantep, Turkey.

出版信息

Analyst. 2023 Aug 7;148(16):3827-3834. doi: 10.1039/d3an00814b.

Abstract

A novel electrochemical detection method based on a nickel ferrite@graphene (NiFeO@Gr) nanocomposite-containing molecularly imprinted polymer (MIP) was developed for the sensitive determination of butylated hydroxyanisole (BHA). After successful completion of the nanocomposite production under hydrothermal conditions, the NiFeO@Gr nanocomposite and a novel molecularly imprinted sensor based on the NiFeO@Gr nanocomposite were characterized using microscopic, spectroscopic and electrochemical techniques. According to the characterization results, the synthesis of the core-shell type NiFeO@Gr nanocomposite with high purity and efficiency has been proved to be successful. After successful modification of a cleaned glassy carbon electrode (GCE) with the NiFeO@Gr nanocomposite, analytical applications were started with the prepared BHA printed GCE. This novel molecularly imprinted electrochemical sensor for BPA detection demonstrated a linearity of 1.0 × 10-1.0 × 10 M and a low detection limit (LOD, 3.0 × 10 M). In addition, the BHA imprinted polymer based on the NiFeO@Gr nanocomposite also exhibited excellent selectivity, stability, reproducibility and reusability performances in flour analysis.

摘要

开发了一种基于含镍铁氧体@石墨烯(NiFeO@Gr)纳米复合材料的分子印迹聚合物(MIP)的新型电化学检测方法,用于灵敏测定丁基羟基茴香醚(BHA)。在水热条件下成功制备纳米复合材料后,采用显微镜、光谱和电化学技术对NiFeO@Gr纳米复合材料和基于该纳米复合材料的新型分子印迹传感器进行了表征。根据表征结果,已证明成功合成了高纯度、高效率的核壳型NiFeO@Gr纳米复合材料。在用NiFeO@Gr纳米复合材料成功修饰清洁的玻碳电极(GCE)后,开始使用制备的BHA印迹GCE进行分析应用。这种用于检测双酚A的新型分子印迹电化学传感器的线性范围为1.0×10 - 1.0×10 M,检测限低(LOD,3.0×10 M)。此外,基于NiFeO@Gr纳米复合材料的BHA印迹聚合物在面粉分析中还表现出优异的选择性、稳定性、重现性和可重复使用性。

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