4.6 Article

MnO2 Nanowires-Decorated Reduced Graphene Oxide Modified Glassy Carbon Electrode for Sensitive Determination of Bisphenol A

Journal

JOURNAL OF THE ELECTROCHEMICAL SOCIETY
Volume 167, Issue 4, Pages -

Publisher

ELECTROCHEMICAL SOC INC
DOI: 10.1149/1945-7111/ab79a7

Keywords

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Funding

  1. Hunan Provincial Natural Science Foundation [2016JJ4010, 2018JJ34]
  2. Scientific Research Fund of Hunan Provincial Education Department [18A336]
  3. Fund of the Project of Science and Technology Department of Hunan Province [GD16K02]
  4. Project of Science and Technology Department of Hunan Province [18A273, 18C0522]
  5. Project of Science and Technology Plan in Zhuzhou [201706-201806]
  6. Project of Hengyang Normal University [HXKJ201912]
  7. Doctoral Program Construction of Hunan University of Technology
  8. Postgraduates Innovation Fund of HUT
  9. NSFC [61703152]
  10. Opening Projects of Key Laboratory of Functional Organometallic Materials, University of Hunan Province [GN19K01, GN19K05]
  11. Project of Key Laboratory of Functional Metal-Organic Compounds of Hunan Province [MO19K08]

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In this paper, MnO2 nanowires-decorated reduced graphene oxide composite (MnO2 NWs-rGO) was synthesized by physical adsorption and controlled potential reduction. Means of X-ray diffraction (XRD), scanning electron microscopy (SEM), and cyclic voltammetry (CV) were used to characterize this material. Glassy carbon electrode (GCE) modified with MnO2 NWs-rGO composite was fabricated by drop-coating method for the sensitive determination of bisphenol A (BPA). Electrochemical behaviors of BPA at the MnO2 NWs-rGO/GCE were studied using CV and chronocoulometry (CC). Experimental results found that MnO2 NWs-rGO/GCE exhibited excellent electrocatalytic activity, sensitivity, stability, and selectivity towards BPA. Under the optimized experimental conditions, quantitative analysis was carried out using the second derivative linear sweep voltammetry (SDLSV), and the MnO2 NWs-rGO/GCE revealed a good linear response to BPA concentration ranging from 0.02-20 mu M and 20-100 mu M, and the detection limit was 6.0 nM (S/N = 3). This new method possessed some obvious advantages, such as high determination sensitivity, simple preparation process, rapid response and low cost. The sensing performance of MnO2 NWs-rGO/GCE was demonstrated for the detection of BPA in plastic samples, and satisfactory results have been obtained. Therefore, an efficient determination method for monitoring trace levels of BPA was developed. (c) 2020 The Electrochemical Society (ECS). Published on behalf of ECS by IOP Publishing Limited.

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