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噻咯[4]芳烃-铜(I)金属有机骨架与介孔碳复合材料用于抗生素的电化学高效检测。

Composite of a thiacalix[4]arene-copper(I) metal-organic framework and mesoporous carbon for efficient electrochemical detection of antibiotics.

机构信息

Key Laboratory of Polyoxometalate and Reticular Material Chemistry of Ministry of Education, Department of Chemistry, Northeast Normal Univetsity, Changchun, 130024, China.

Institute of Functional Material Chemistry, National & Local United Engineering Laboratory for Power Batteries, Department of Chemistry, Northeast Normal University, Changchun, 130024, China.

出版信息

Talanta. 2024 Mar 1;269:125490. doi: 10.1016/j.talanta.2023.125490. Epub 2023 Nov 30.

Abstract

Abundant use of nitrofurantoin (NFT) and metronidazole (MTZ) antibiotics has led to excessive residues in the environments and humans, resulting in serious damage to the human body and ecosystem. Therefore, effective detection of NFT and MTZ is exceedingly necessary. In this regard, metal-organic frameworks (MOFs) are promising materials as electrochemical sensors. Herein, we synthesized a new two-dimensional thiacalix [4]arene-copper (I) MOF (Cu-TC4A-M). This MOF was mixed with mesoporous carbon (MC) to a give Cu-TC4A-M@MC composite. In addition, the sensors of Cu-TC4A-M@MC(2:1)/GCE and Cu-TC4A-M@MC(1:2)/GCE were achieved (GCE = glassy carbon electrode), and then were applied for effectively detecting NFT and MTZ, respectively. Markedly, the two sensors exhibited satisfactory linear detection range, anti-interference, reproducibility and stability. When they were utilized in the real samples, such as human serum, urine, tap water and lake water, satisfactory recoveries were attained. The relative standard deviations (RSDs) were in the range of 1.16 % ∼ 1.92 % for NFT and 0.95 % ∼ 2.33 % for MTZ. This work provided a new application prospect for the thiacalix [4]arene-based MOFs as promising candidate materials for NFT and MTZ detection.

摘要

硝基呋喃妥因(NFT)和甲硝唑(MTZ)抗生素的大量使用导致其在环境和人体中产生了过量残留,对人体和生态系统造成了严重的损害。因此,有效检测 NFT 和 MTZ 是非常必要的。在这方面,金属有机框架(MOFs)作为电化学传感器是很有前途的材料。在此,我们合成了一种新型二维硫代杯[4]芳烃-铜(I)MOF(Cu-TC4A-M)。该 MOF 与介孔碳(MC)混合得到 Cu-TC4A-M@MC 复合材料。此外,构建了 Cu-TC4A-M@MC(2:1)/GCE 和 Cu-TC4A-M@MC(1:2)/GCE 传感器(GCE=玻碳电极),并分别用于有效检测 NFT 和 MTZ。值得注意的是,这两个传感器均表现出令人满意的线性检测范围、抗干扰性、重现性和稳定性。当它们应用于实际样品(如人血清、尿液、自来水和湖水)时,均获得了令人满意的回收率。NFT 的相对标准偏差(RSD)在 1.16%-1.92%之间,MTZ 的 RSD 在 0.95%-2.33%之间。这项工作为基于硫代杯[4]芳烃的 MOFs 作为 NFT 和 MTZ 检测的有前途的候选材料提供了新的应用前景。

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