4.6 Article

Co3O4 based non-enzymatic glucose sensor with high sensitivity and reliable stability derived from hollow hierarchical architecture

Journal

NANOTECHNOLOGY
Volume 29, Issue 7, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1361-6528/aaa1d2

Keywords

Co3O4; hierarchical architecture; coordinated etching and precipitation; electrochemical sensor; glucose detection

Funding

  1. National Natural Science Foundation of China [21403020, 51503022]
  2. Basic and Frontier Research Program of Chongqing Municipality [cstc2016jcyjAX0014, cstc2015jcyjA50036, CSTC2015JCYJBX0126, CSTC2016SHMSZX20001]
  3. Scientific and Technological Research Program of Chongqing Municipal Education Commission [KJ1601133, KJ1601104]

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Inspired by kinetics, the design of hollow hierarchical electrocatalysts through large-scale integration of building blocks is recognized as an effective approach to the achievement of superior electrocatalytic performance. In this work, a hollow, hierarchical Co3O4 architecture (Co3O4 HHA) was constructed using a coordinated etching and precipitation (CEP) method followed by calcination. The resulting Co3O4 HHA electrode exhibited excellent electrocatalytic activity in terms of high sensitivity (839.3 mu A mM(-1) cm(-2)) and reliable stability in glucose detection. The high sensitivity could be attributed to the large specific surface area (SSA), ample unimpeded penetration diffusion paths and high electron transfer rate originating from the unique two-dimensional (2D) sheet-like character and hollow porous architecture. The hollow hierarchical structure also affords sufficient interspace for accommodation of volume change and structural strain, resulting in enhanced stability. The results indicate that Co3O4 HHA could have potential for application in the design of non-enzymatic glucose sensors, and that the construction of hollow hierarchical architecture provides an efficient way to design highly active, stable electrocatalysts.

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