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      Gold nanoparticles anchored onto three-dimensional graphene: simultaneous voltammetric determination of dopamine and uric acid.

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          Abstract

          An electrochemical sensor is described for simultaneous voltammetric determination of dopamine (DA) and uric acid (UA). It is based on the use of a nanomaterial composed of gold nanoparticles and 3-dimensional graphene (Au NP@3D GR). The 3D GR was prepared by chemical vapor deposition using nickel nanoparticles as the template at a temperature of around 900 °C. The surface of 3D GR contains oxygen-functional groups after treatment with acid. Carboxylated Au NP were self-assembled and anchored onto the surface of 3D GR. The nanomaterial was placed on a ITO electrode. The few-layer graphene on the ITO glass has a porous structure and the distribution of Au NP is uniform. The electrode shows a high sensitivity and a low detection limit for DA and UA. Figures of merit include detection limits of 0.1 M for DA and of 0.1 μM for UA, and well separated peaks at potentials of 0.18 and 0.30 V (vs. Ag/AgCl), respectively, at pH 7.0. The electrode has good repeatability and stability. Graphical abstract Carboxylated gold nanoparticles were self-assembled and immobilized on 3-dimensional graphene by chemical vapor deposition for simultaneous determination of dopamine (DA) and uric acid (UA).

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          Author and article information

          Journal
          Mikrochim Acta
          Mikrochimica acta
          Springer Science and Business Media LLC
          1436-5073
          0026-3672
          July 24 2019
          : 186
          : 8
          Affiliations
          [1 ] School of Materials Science and Engineering, Harbin University of Science and Technology, Harbin, 150040, People's Republic of China.
          [2 ] School of Materials Science and Engineering, Harbin University of Science and Technology, Harbin, 150040, People's Republic of China. hyyue@hrbust.edu.cn.
          [3 ] Department of Neurology, The First Affiliated Hospital of Harbin Medical University, Harbin, 150001, People's Republic of China.
          Article
          10.1007/s00604-019-3663-7
          10.1007/s00604-019-3663-7
          31342189
          b99568d5-ac81-46da-95f0-5cd6f510df9f
          History

          Chemical vapor deposition,Gold nanoparticle,Three-dimensional graphene,Voltammetric assay

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