4.7 Article

In-situ synthesis of Cu2O-Au nanocomposites as nanozyme for colorimetric determination of hydrogen peroxide

Journal

JOURNAL OF ALLOYS AND COMPOUNDS
Volume 747, Issue -, Pages 676-683

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2018.03.054

Keywords

Cu2O-Au nanocomposites; Hydrogen peroxide; Colorimetric method; Biosensor; Peroxides-like

Funding

  1. NSFC [21405029, 51173035]
  2. Science and Technology Program of Zhejiang Province [LGF18H200005]
  3. Young Talent Development Project of Zhejiang Science and Technology Association [2016YCGC007]
  4. Social Development Project of Hangzhou [20160533B70]

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In this paper, gold nanoparticles-doped Cu2O cubes (Cu2O-Au nanocomposites) with peroxide-like character were readily prepared through a simple two-step method and were used for sensitive readout of H2O2 with color variation for the first time. By changing reaction temperature and feed rate, Cu2O nanocrystals with very small size were obtained and were then used to prepare Cu2O-Au nano-composites. HR-TEM, SEM, and XRD were used to characterize their morphology and size. The results revealed that the as-prepared Cu2O-Au nanocomposites displayed rough cube morphology, with Cu2O cube, ca. 85 nm in size, filled with 8 nm spheres. In the presence of H2O2, 3,3,5',5'-tetramethyl benzidine (TMB) was catalyzed by Cu2O-Au nanocomposites and generated color changes, which was employed to detect H2O2. By comparison with Cu2O nanocrystals with different sizes, Cu2O-Au nanocomposites exhibited highest peroxide-like activity, which relies heavily on the pH and temperature in the reaction systems and satisfies with the Michaelis-Menten kinetics. Based on these findings, a colorimetric method was developed to detect H2O2 over a range between 0.4 mu M and 1000 mu M. This platform extends a great prospect in the field of clinical diagnosis, food safety, and environmental monitoring. (C) 2018 Elsevier B.V. All rights reserved.

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