Published February 16, 2024 | Version v1
Journal article

Synthesis of Au/Cu2O/graphene quantum dots nanocomposites and its application for glucose oxidation

  • 1. Nano-Electrochemistry Laboratory, Room 2.18, CTU Hi-Tech Building, Faculty of Chemical Engineering, College of Engineering, Can Tho University, 3/2 Street, Ninh Kieu District, Can Tho, 900000 (Viet Nam)
  • 2. Advanced Construction Materials Laboratory, Room 1.32, Research Laboratories Complex, Faculty of Civil Engineering, College of Engineering, Can Tho University, 3/2 Street, Ninh Kieu District, Can Tho (Viet Nam)

Description

In this study, the novel Au/Cu2O/Graphene quantum dots nanocomposites have been synthesized via a fast, simple and environmentally friendly method for the first time. Specifically, Cu2O nanocubes (Cu2O NCBs) synthesized by a reduction reaction at room temperature were combined with Au nanoparticles (Au NPs) and Graphene quantum dots (GQDs) obtained from low-cost and naturally abundant material. The synthesized Au/Cu2O/GQDs were characterized by UV-vis, FTIR, XRD, TEM, FESEM, and EDS. The results show that the Au/Cu2O/GQDs have an average size of about 32-36 nm, in which the diameter of Au NPs is ~28-32 nm, Cu2O particles have the form of nanocube with the size of ~29-33 nm and GQDs are small spherical with an average size of ~5 nm. In addition, the electrochemical properties of the Au/Cu2O/GQDs electrodes were investigated using the cyclic voltammetry (CV) technique. The obtained results show that the Au/Cu2O/GQDs have high electroactivity, which are very potential and promising to be used in glucose sensor with a very wide concentration of glucose detection range from 10-10 M to 1 M with a the LOD of 70 nM (7×10-8 M) and a high sensitivity of 32.5 μAμM-1cm-2. Therefore, Au/Cu2O/GQDs will be potential candidate for non-enzymatic sensitive glucose sensors in the future. (author)

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Chemical Sciences (Online)
Journal Volume
136
Journal Issue
13
Journal Page Range
[12 p.]
ISSN
0973-7103