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Electrochemical Sensor of Double-Thiol Linked PProDOT@Si Composite for Simultaneous Detection of Cd(II) Pb(II) and Hg(II)

机译:双硫醇连接的PProDOT @ Si复合材料的电化学传感器用于同时检测Cd(II)Pb(II)和Hg(II)

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摘要

Heavy metal ions in water, cosmetics, and arable land have become a world-wide issue as they cause a variety of diseases and even death to humans and animals when a certain level is exceeded. Therefore, it is necessary to development a new kind of sensor material for the determination of heavy metal ions. In this paper, we present an electrochemical sensor based on composite material (thiol(–SH) grafted poly(3,4-proplenedioxythiophene) (PProDOT(MeSH)2)/ porous silicon spheres (Si) composite, denoted as PProDOT(MeSH)2@Si) from the incorporation of thiol(–SH) grafted poly(3,4-proplenedioxythiophene) (PProDOT(MeSH)2) with porous silicon spheres (Si) for the electrochemical detection of heavy metal ions (Cd(II), Pb(II), and Hg(II)). The PProDOT(MeSH)2@Si composite was synthesized via a chemical oxidative polymerization method. The structure and morphology of PProDOT(MeSH)2@Si composite were characterized by Fourier transform infrared (FT-IR), Ultraviolet–visible spectroscopy (UV–Vis), X-ray diffraction (XRD), scanning electron microscope (SEM), Transmission electron microscope (TEM), and Brunauer−Emmett−Teller (BET). Furthermore, the electrochemical performance of PProDOT(MeSH)2@Si was evaluated by detecting of Cd(II), Pb(II), and Hg(II) ions using the differential pulse voltammetry (DPV) method. The relationship between structural properties and the electrochemical performance was systematically studied. The results showed that the entry of two thiol-based chains to the monomer unit resulted in an increase in electrochemical sensitivity in PProDOT(MeSH)2, which was related to the interaction between thiol group(-SH) and heavy metal ions. And, the combination of PProDOT(MeSH)2 with Si could improve the electrocatalytic efficiency of the electrode material. The PProDOT(MeSH)2@Si/GCE exhibited high selectivity and sensitivity in the rage of 0.04 to 2.8, 0.024 to 2.8, and 0.16 to 3.2 μM with the detection limit of 0.00575, 0.0027, and 0.0017 µM toward Cd(II), Pb(II), and Hg(II), respectively. The interference studies demonstrated that the PProDOT(MeSH)2@Si/GCE possessed a low mutual interference and high selectivity for simultaneous detection of Cd(II), Pb(II), and Hg(II) ions.
机译:水,化妆品和耕地中的重金属离子已经成为世界性的问题,因为当超过一定水平时,它们会导致多种疾病,甚至导致人畜死亡。因此,有必要开发一种新型的用于确定重金属离子的传感器材料。在本文中,我们介绍了一种基于复合材料(硫醇(–SH)接枝的聚(3,4-丙二氧基噻吩)(PProDOT(MeSH)2)/多孔硅球(Si)复合物,表示为PProDOT(MeSH))的电化学传感器2 @ Si)与硫醇(–SH)接枝的聚(3,4-丙二氧基噻吩)(PProDOT(MeSH)2)和多孔硅球(Si)结合用于电化学检测重金属离子(Cd(II), Pb(II)和Hg(II))。通过化学氧化聚合法合成了PProDOT(MeSH)2 @ Si复合材料。通过傅立叶变换红外光谱(FT-IR),紫外可见光谱(UV-Vis),X射线衍射(XRD),扫描电子显微镜(SEM)对PProDOT(MeSH)2 @ Si复合材料的结构和形貌进行了表征。透射电子显微镜(TEM)和Brunauer-Emmett-Teller(BET)。此外,通过使用微分脉冲伏安法(DPV)检测Cd(II),Pb(II)和Hg(II)离子,评估了PProDOT(MeSH)2 @ Si的电化学性能。系统地研究了结构性能与电化学性能之间的关系。结果表明,两条基于硫醇的链进入单体单元导致PProDOT(MeSH)2的电化学敏感性增加,这与硫醇基(-SH)与重金属离子之间的相互作用有关。而且,PProDOT(MeSH)2与Si的组合可以提高电极材料的电催化效率。 PProDOT(MeSH)2 @ Si / GCE在0.04至2.8、0.024至2.8和0.16至3.2μM的范围内显示出高的选择性和灵敏度,对Cd(II)的检测限为0.00575、0.0027和0.0017 µM,分别是Pb(II)和Hg(II)。干扰研究表明,对于同时检测Cd(II),Pb(II)和Hg(II)离子而言,PProDOT(MeSH)2 @ Si / GCE具有较低的相互干扰和高选择性。

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