4.8 Article

Nanoporous gold supported cobalt oxide microelectrodes as high-performance electrochemical biosensors

Journal

NATURE COMMUNICATIONS
Volume 4, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms3169

Keywords

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Funding

  1. National Natural Science Foundation of China [51201069, 81270315]
  2. National Key Basic Research Development Program [2010CB631001]
  3. Keygrant Project of Chinese Ministry of Education [313026]
  4. Program for New Century Excellent Talents in University [NCET-10-0437]
  5. Research Fund for the Doctoral Program of Higher Education of China [20120061120042]

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Tremendous demands for electrochemical biosensors with high sensitivity and reliability, fast response and excellent selectivity have stimulated intensive research on developing versatile materials with ultrahigh electrocatalytic activity. Here we report flexible and self-supported microelectrodes with a seamless solid/nanoporous gold/cobalt oxide hybrid structure for electrochemical nonenzymatic glucose biosensors. As a result of synergistic electrocatalytic activity of the gold skeleton and cobalt oxide nanoparticles towards glucose oxidation, amperometric glucose biosensors based on the hybrid microelectrodes exhibit multi-linear detection ranges with ultrahigh sensitivities at a low potential of 0.26 V (versus Ag/AgCl). The sensitivity up to 12.5mAmM(-1) cm(-2) with a short response time of less than 1 s gives rise to ultralow detection limit of 5 nM. The outstanding performance originates from a novel nanoarchitecture in which the cobalt oxide nanoparticles are incorporated into pore channels of the seamless solid/nanoporous Au microwires, providing excellent electronic/ionic conductivity and mass transport for the enhanced electrocatalysis.

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