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The Auto-Combustion Method Synthesized Eu2O3-ZnO Nanostructured Composites for Electronic and Photocatalytic Applications

  • Thekrayat H. Alabdulaal
  • , Vanga Ganesh
  • , Manal Alshadidi
  • , Mai S.A. Hussien
  • , Abdelfatteh Bouzidi
  • , Hamed Algarni
  • , Heba Y. Zahran
  • , Mohamed Sh Abdel-Wahab
  • , Ibrahim S. Yahia
  • , Samia Nasr
  • King Khalid University
  • Ain Shams University
  • University of Sfax
  • Shaqra University
  • Faculty of Postgraduate Studies for Advanced Sciences

Research output: Contribution to journalArticlepeer-review

25 Scopus citations

Abstract

An efficient and environmentally friendly combustion technique was employed to pro-duce ZnO nanopowders with different Eu concentrations (from 0.001 g to 5 g). The structural morphology of the Eu2O3-ZnO nanocomposites was examined using XRD, SEM, and infrared spectroscopy (FT-IR). In addition, UV-Vis diffuse reflectance spectroscopy was also used to investigate the effects of europium (Eu) dopant on the optical behaviors and energy bandgaps of nano-complex oxides. The photocatalytic degradation efficiency of phenol and methylene blue was investigated using all the prepared Eu2O3-ZnO nanostructured samples. Photocatalytic effectiveness increased when europium (Eu) doping ratios increased. After adding moderate Eu, more hydroxyl radicals were generated over ZnO. The best photocatalyst for phenol degradation was 1 percent Eu2O3-ZnO, while it was 0.5 percent Eu2O3-ZnO for methylene blue solutions. The obtained Eu2O3-doped ZnO nanostructured materials are considered innovative, promising candidates for a wide range of nano-applications, including biomedical and photocatalytic degradation of organic dyes and phe-nol.

Original languageEnglish
Article number3257
JournalMaterials
Volume15
Issue number9
DOIs
StatePublished - 1 May 2022
Externally publishedYes

Keywords

  • EuO-ZnO nanostructured composites
  • combustion method
  • electrical
  • optical
  • photocatalytic activity
  • structural

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