4.7 Article

A sensitive bisphenol A voltammetric sensor relying on AuPd nanoparticles/graphene composites modified glassy carbon electrode

Journal

TALANTA
Volume 166, Issue -, Pages 126-132

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.talanta.2017.01.049

Keywords

Gold-palladium; Graphene; Determination; Bisphenol A

Funding

  1. National Natural Science Foundation of China [21675062, 21305050]
  2. Program for New Century Excellent Talents in Fujian Province University (NCETFJ) [B16164]
  3. Special Foundation for Young researchers of the Health Department of Fujian [2013-2-106]
  4. Scientific Research Foundation of Jimei University, China [ZQ2014009]

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In this work, a sensitive bisphenol A (BPA) electrochemical sensor was assembled using a surfactant-free AuPd nanoparticles-loaded graphene nanosheets (AuPdNPs/GNs) modified electrode. The AuPdNPs monodispersed on GNs were successfully prepared by the spontaneous redox reaction between bimetallic precursors and GNs. Because no surfactant or halide ions were involved in the proposed synthesis, the prepared composite was enabled to directly modify a glassy carbon electrode without any pre-treatments. Moreover, due to the synergetic effect of Au and Pd, AuPdNPs/GNs displayed high electrochemical activity with well-defined voltammetric peaks of BPA oxidation and lower overpotential compared with monometallic PdNPs and AuNPs supported GNs. According to the results of differential pulse voltammetry (DPV), under optimized conditions, a good linear response was observed for the concentration of BPA in the range of 0.05-10 M with a detection limit of 8 nM. The developed electrochemical sensor was successfully applied to determine BPA in food package. This study indicated that AuPdNPs/GNs based electrochemical sensor can be a promising and reliable tool for rapid analysis of emergency pollution affairs of BPA.

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