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用于测定双酚A的灵敏电化学传感器——CuFeO微球/碳片复合材料的研制

Development of CuFeO microspheres/carbon sheets composite materials as a sensitive electrochemical sensor for determination of bisphenol A.

作者信息

Wang Ying, Wang Xinming, Chu Mingyue, Xin Jianjiao, Jin Zhongxin, Ma Huiyuan, O'Halloran Kevin P, Wang Yingji, Pang Haijun, Yang Guixin

机构信息

The School of Material Science and Chemical Engineering, Harbin University of Science and Technology, Harbin, 150040, P. R. China.

School of Science and Technology, Georgia Gwinnett College, Lawrenceville, GA, 30043, USA.

出版信息

Mikrochim Acta. 2024 Nov 14;191(12):743. doi: 10.1007/s00604-024-06806-2.

Abstract

A composite material based on CuFe-ZIF-derived CuFeO nano-microspheres grown in situ and well-ordered on carbon sheets (CS) was prepared and applied for highly effective determination of bisphenol A (BPA). The composite material possessed inherently high redox activity due to the presence of both Cu and Fe ions with various oxidation states (Cu²⁺/Cu⁺ and Fe³⁺/Fe²⁺), high specific surface area, uniform distribution of Cu and Fe ions, and a robust framework imparted by its precursor CuFe-ZIF. This led to increased active sites for electrochemical reactions, improved electron transfer efficiency, and structural integrity during electrochemical cycling. Furthermore, combining CS with CuFeO not only provided a large surface area to support well-ordered CuFe₂O₄ nano-microspheres without aggregation, but also enhanced the conductivity and mechanical stability of the CuFe₂O₄/CS composite. This results in synergistic effects that enhanced the overall performance of the composite material. In addition, both copper and iron are relatively non-toxic and abundant, making CuFe₂O₄/CS safe and cost-effective for large-scale applications. Consequently, the CuFeO/CS-modified electrode shows highly efficient electrochemical sensing properties with a wider detection range of 0.009-168 µM and lower detection limit of 0.0027 µM (S/N = 3) compared with most reported BPA sensors. It also has an optimized current at pH 7 which is convenient for real world applications. This CuFeO/CS modified electrode as a highly sensitive electrochemical platform can be applied to monitor BPA concentrations in bottled water with good recovery (97.2-102.2%).

摘要

制备了一种基于原位生长且有序排列在碳片(CS)上的CuFe-ZIF衍生的CuFeO纳米微球的复合材料,并将其用于高效测定双酚A(BPA)。由于存在具有多种氧化态的Cu和Fe离子(Cu²⁺/Cu⁺和Fe³⁺/Fe²⁺),该复合材料具有固有的高氧化还原活性、高比表面积、Cu和Fe离子的均匀分布以及由其前驱体CuFe-ZIF赋予的坚固框架。这导致电化学反应的活性位点增加、电子转移效率提高以及电化学循环过程中的结构完整性。此外,将CS与CuFeO结合不仅提供了大表面积以支撑有序排列的CuFe₂O₄纳米微球而不发生聚集,还增强了CuFe₂O₄/CS复合材料的导电性和机械稳定性。这产生了协同效应,增强了复合材料的整体性能。此外,铜和铁相对无毒且含量丰富,使得CuFe₂O₄/CS对于大规模应用既安全又经济高效。因此,与大多数报道的BPA传感器相比,CuFeO/CS修饰电极显示出高效的电化学传感特性,检测范围更宽,为0.009 - 168 μM,检测限更低,为0.0027 μM(S/N = 3)。它在pH 7时也具有优化的电流,便于实际应用。这种CuFeO/CS修饰电极作为一个高度灵敏的电化学平台,可用于监测瓶装水中的BPA浓度,回收率良好(97.2 - 102.2%)。

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