One-step, low temperature synthesis of reduced graphene oxide decorated with ZnO nanocrystals using galvanized iron steel scrap

R V Tolentino-Hernandez, E. Jimenez-Melero, F J Espinosa-Faller, C Guarneros-Aguilar, F Caballero-Briones*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

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Abstract

Production of a ZnO-rGO composite, using a novel one-pot method consisting in continuously flowing argon into a GO aqueous suspension heated at 80 C, in the presence of galvanized iron steel scrap is presented. FTIR shows the complete disappearance of GO functional groups and only the C=C band remained, indicating extensive GO reduction. Raman spectra indicated sp2 character increase after reaction and the presence of the E2h mode of ZnO. SEM showed submicron crystals identified by XRD as ZnO in the hexagonal phase, while TEM images indicate ZnO nanoparticles decorate mainly the rGO borders. Optical band gap of 3.5 eV corresponding to ZnO, and optical transitions at 4.1 and 5.5 eV related with n → π and π → π were observed. Electrochemical characterization by cyclic voltammetry shows an specific capacitance of 4.7 F g-1 at a scan rate of 5 mVs-1, which drops to ca. 0.8 F g-1 at 200 mVs-1. By electrochemical impedance spectroscopy, the relaxation time was ca. 5 ms. The proposed mechanism for the materials' synthesis includes Zn dissolution from scrap, galvanic displacement of oxygen moieties at the GO sheet, Zn deposition onto the carbon surface, and further oxidation and growth of ZnO nanocrystals.

Original languageEnglish
Article number065010
Number of pages10
JournalMaterials Research Express
Volume8
Issue number6
DOIs
Publication statusPublished - 30 Jun 2021

Bibliographical note

Funding Information:
Financed thru the SIP-IPN 20211513 andCONACYT40798 projects. R. V. Tolentino-Hernandez was financed byCONACYTMaster and by BEIFI-IPN grants. Authors thank L. B. Orozco-Solorio for FTIR measurements; to S. A. Pacheco-Buendia for technical support inXRDacquisition; to Dr. R Rangel-Mendez at IPICYT for the access to LINAN facilities for SEM acquisition; to Dr MaLourdes Palma Tirado at Unidad de Microscopia, Instituto de NeurobiologiaUNAMJuriquilla, forTEMacquisition. Authors acknowledge Dr M. Pacio Castillo (CIDS-BUAP) for the facilities provided for diffuse reflectance measurements and Raman acquisition

Keywords

  • Galvanic displacement
  • GO reduction
  • Spontaneous reaction
  • ZnO-rGO

ASJC Scopus subject areas

  • Electronic, Optical and Magnetic Materials
  • Biomaterials
  • Surfaces, Coatings and Films
  • Polymers and Plastics
  • Metals and Alloys

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