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一种由 MnO 纳米花和导电聚合物 PEDOT 组成的纳米复合材料,用于对扑热息痛进行高灵敏度的电流检测。

A nanocomposite consisting of MnO nanoflowers and the conducting polymer PEDOT for highly sensitive amperometric detection of paracetamol.

机构信息

Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science, MOE, Qingdao University of Science and Technology, Qingdao, 266042, China.

Shandong Key Laboratory of Biochemical Analysis, Qingdao University of Science and Technology, Qingdao, 266042, China.

出版信息

Mikrochim Acta. 2019 Jul 3;186(8):499. doi: 10.1007/s00604-019-3614-3.

Abstract

An electrochemical sensor for paracetamol is described that consists of a glassy carbon electrode (GCE) that was modified with the conducting polymer poly(3,4-ethylenedioxythiophene) (PEDOT) doped with MnO nanoflowers. The hydrothermally synthesized MnO nanoflowers possess a large surface area and can be doped into PEDOT through electrochemical deposition to form a conducting polymer nanocomposite. The nanoflowers are shown to be uniformly distributed within the nanocomposite as revealed by elemental mapping analysis. The nanocomposite displays excellent catalytic activity toward the electrochemical oxidation of paracetamol. The modified GCE, best operated at a working potential of around 0.37 V (vs. SCE) has a linear response in 0.06 to 435 μM paracetamol concentration range and a very low limit of detection (31 nM at a signal-to-noise ratio of 3). The sensor exhibits excellent reproducibility and stability, and satisfying accuracy for paracetamol detection in pharmaceutical samples. Graphical abstract A highly sensitive electrochemical sensor capable of detecting paracetamol with a limit of detection down to 31 nM was developed based on MnO nanoflowers doped conducting polymer PEDOT.

摘要

一种用于扑热息痛的电化学传感器,由玻碳电极(GCE)修饰而成,该电极修饰了掺杂 MnO 纳米花的导电聚合物聚(3,4-亚乙基二氧噻吩)(PEDOT)。水热合成的 MnO 纳米花具有较大的比表面积,可通过电化学沉积掺杂到 PEDOT 中,形成导电聚合物纳米复合材料。元素映射分析表明,纳米花在纳米复合材料中均匀分布。纳米复合材料对扑热息痛的电化学氧化表现出优异的催化活性。修饰后的 GCE 在工作电位约为 0.37 V(相对于 SCE)时表现出最佳性能,在 0.06 至 435 μM 扑热息痛浓度范围内具有线性响应,检测限非常低(信噪比为 3 时为 31 nM)。该传感器表现出优异的重现性和稳定性,以及在药物样品中检测扑热息痛的令人满意的准确性。

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