4.7 Article

Synthesis of palladium@gold nanoalloys/nitrogen and sulphur-functionalized multiple graphene aerogel for electrochemical detection of dopamine

Journal

ANALYTICA CHIMICA ACTA
Volume 954, Issue -, Pages 43-51

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.aca.2016.12.031

Keywords

Palladium@gold nanoalloys; Nitrogen and sulphur-functionalized multiple graphene aerogel; Dopamine; Electrochemical sensor; Detection

Funding

  1. National Natural Science Foundation of China [21576115]
  2. Cooperative Innovation Fund [BY2015019-26]
  3. MOE [B13025]
  4. SAFEA [B13025]

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Integration of noble metal nanomaterials on graphene nanosheets potentially paves one way to improve their electronic, chemical and electrochemical properties. The study reported synthesis of palladium@gold nanoalloys/nitrogen and sulphur-functionalized multiple graphene aerogel composite (Pd@Au/N,S-MGA). The as-prepared composite offers a well-defined three-dimensional' architecture with rich of mesopores. The Pd@Au nanoalloys were dispersed on the graphene framework networks and their active sites were fully exposed. The unique structure achieves to ultra high electron/ion conductivity, electrocatalytic activity and structural stability. The sensor based on the Pd@Au/N,S-MGA creates ultrasensitive electrochemical response towards dopamine due to significantly electrochemical synergy between Pd, Au and N,S-MGA. Its differential pulse voltammetric signal linearly increases with the increase of dopamine concentration in the range from 1.0 x 10(-9) M to 4.0 x 10(-5) M with the detection limit of 3.6 x 10(-19) M (S/N = 3). The analytical method provides the advantage of sensitivity, reproducibility, rapidity and long-term stability. It has been successfully applied in the detection of trace dopamine in biological samples. The study also opens a window on the electronic properties of graphene aerogel and metal nanomaterials as well their nanohybrids to meet needs of further applications as nanoelectronics in diagnosis, bioanalysis and catalysis. (C) 2016 Elsevier B.V. All rights reserved.

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