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Chemically versus electrochemically reduced graphene oxide: Improved amperometric and voltammetric sensors of phenolic compounds on higher roughness surfaces

机译:化学还原与电化学还原的氧化石墨烯:改进的高粗糙度表面上的酚类化合物的安培和伏安传感器

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摘要

The electrochemistry of hydroquinone (HQ), catechol (CT), and dopamine (DP) on a glassy-carbon electrode (GCE) modified with chemically (CRG0) and electrochemically reduced graphene oxide (ERGO) was investigated and compared for the development of amperometric and voltammetric sensors. Cyclic voltammetric measurements showed higher current on the CRGO-modified GCE, which can be explained by the higher number of sheets compared with ERGO-modified as revealed by SEM images as well as higher roughness surface monitored by AFM, indicating a higher electroactive area. Electrochemical impedance spectroscopy (EIS) revealed that both modified surfaces presented a very similar behavior (Nyquist plots) and lower resistance to electron transfer in comparison with the unmodified GCE. Considering both modified electrodes for sensing purposes, differential-pulse voltammetry (DPV) in unstirred solutions and amperometry under hydrodynamic solutions showed higher sensitivity and lower limit of detection (LOD) values for HQ, CT and DP on the CRGO-modified GCE. These results indicate that the effect of surface rugosity and electroactive area of RGO modified electrodes contribute to the improvement of sensing characteristics of phenolic compounds using either DPV or amperometric detection under flow conditions. DPV and amperometry provided LOD values between 1 and 5 nmol L~(-1) and 12 and 55 nmol L~(-1), respectively, while the latter offers much faster responses resulting in theoretical analytical frequency higher than 1000h~(-1).
机译:研究了对苯二酚(HQ),邻苯二酚(CT)和多巴胺(DP)在经过化学修饰(CRG0)和电化学还原氧化石墨烯(ERGO)修饰的玻璃碳电极(GCE)上的电化学性能,并比较了其在安培方面的发展和伏安传感器。循环伏安法测量显示,CRGO修饰的GCE上的电流更高,这可以通过SEM图像显示的片数比ERGO修饰的片数更高以及AFM监测的较高粗糙度表面来表示,这表明较高的电活性面积。电化学阻抗谱(EIS)显示,与未修饰的GCE相比,两个修饰的表面均表现出非常相似的行为(奈奎斯特图),并且对电子转移的抵抗力较低。考虑到两个修饰电极均用于传感目的,未搅拌溶液中的差分脉冲伏安法(DPV)和流体动力溶液下的安培法显示,CRGO修饰的GCE的HQ,CT和DP的灵敏度更高,检出限(LOD)更低。这些结果表明,在流动条件下使用DPV或安培检测,RGO修饰电极的表面皱纹和电活性区域的影响有助于改善酚类化合物的感测特性。 DPV和安培法分别提供1至5 nmol L〜(-1)和12至55 nmol L〜(-1)的LOD值,而后者提供更快的响应,从而导致理论分析频率高于1000h〜(-1) )。

著录项

  • 来源
    《Sensors and Actuators》 |2018年第1期|701-708|共8页
  • 作者单位

    Federal University of Uberlandia, Chemistry Institute, 38400-902, Uberlandia, MG, Brazil;

    Federal University of Uberlandia, Chemistry Institute, 38400-902, Uberlandia, MG, Brazil,Fluminense Federal University, Chemistry Institute, Department of Analytical Chemistry, 24020-141, Niteroi, RJ, Brazil;

    Federal University of Uberlandia, Chemistry Institute, 38400-902, Uberlandia, MG, Brazil;

    Federal University of Uberlandia, Chemistry Institute, 38400-902, Uberlandia, MG, Brazil;

    Federal University of Uberlandia, Chemistry Institute, 38400-902, Uberlandia, MG, Brazil;

    Federal University of Uberlandia, Chemistry Institute, 38400-902, Uberlandia, MG, Brazil;

    Federal University of Uberlandia, Chemistry Institute, 38400-902, Uberlandia, MG, Brazil;

    Federal University of Uberlandia, Chemistry Institute, 38400-902, Uberlandia, MG, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Batch-injection analysis; Carbon; Catechol; Dopamine; Electrochemical sensors; Hydroquinone;

    机译:批量注射分析;碳;儿茶酚;多巴胺;电化学传感器对苯二酚;

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