首页> 外文期刊>Electrocatalysis >Ultrasound-Assisted Synthesis of Hybrid Phosphomolybdate-Polybenzidine Containing Silver Nanoparticles for Electrocatalytic Detection of Chlorate, Bromate and Iodate Ions in Aqueous Solutions
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Ultrasound-Assisted Synthesis of Hybrid Phosphomolybdate-Polybenzidine Containing Silver Nanoparticles for Electrocatalytic Detection of Chlorate, Bromate and Iodate Ions in Aqueous Solutions

机译:超声辅助合成含磷钼酸-聚联苯胺的银纳米粒子用于水溶液中氯离子,溴酸根和碘离子的电催化检测

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Herein, we report a hybrid electroactive material composed of silver nanoparticle-embedded polybenzidine matrix containing phosphomolybdic acid as the active inorganic component by an ultrasound-assisted method for the electrochemical detection of chlorate, bromate and iodate ions in aqueous solutions. The prepared hybrid material was characterised for its physicochemical properties: X-ray diffraction and transmission electron microscopy analyses provided evidence for the presence of silver nanoparticles (~12 nm) in the hybrid material. The synthesized hybrid material was successfully fabricated on a glassy carbon electrode, and cyclic voltammetry was used to probe its electrochemical properties in 1 M H2SO4 solution. Amperometry was employed in order to find out the detection limits of chlorate, bromate and iodate ions in aqueous solutions. This hybrid electrochemical interface showed the lowest detection limits of 86.3 nM, 1.45 uM and 1.66 μM for bromate, iodate and chlorate, respectively. Phosphomolybdate anion (PMo12) present in the hybrid material acted as both effective mediator and the source of mobile protons at the electrochemical interface. Silver nanoparticles present in the hybrid material further influenced the electroactivity of the modified electrode.
机译:在这里,我们报告了一种混合电活性材料,该材料由超声法辅助电化学检测水溶液中的氯酸根,溴酸根和碘酸根离子,由银纳米颗粒嵌入的聚联苯胺基体组成,该基体含有磷钼酸作为活性无机成分。制备的杂化材料的物理化学特性得到了表征:X射线衍射和透射电镜分析提供了杂化材料中存在银纳米粒子(〜12 nm)的证据。合成的杂化材料成功地在玻璃碳电极上制备,并用循环伏安法检测其在1 M H2SO4溶液中的电化学性能。为了确定水溶液中氯酸根,溴酸根和碘酸根离子的检出限,采用了安培法。该混合电化学界面对溴酸盐,碘酸盐和氯酸盐的最低检出限分别为86.3 nM,1.45 uM和1.66μM。杂化材料中存在的磷钼酸根阴离子(PMo12)既充当有效介体,又充当电化学界面处移动质子的来源。杂化材料中存在的银纳米颗粒进一步影响了修饰电极的电活性。

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