Logo Logo
  • Home
    • Home
    • Editorial Board
    • Goal of the Journal
    • Submission of Papers
    • License Agreement
    • Open Access Statement
    • Guidelines for Authors
    • Peer Review Process
    • Archiving and Deposit Policies
    • Ethics of the Journal
    • Browse Journal Archive
  • Browse journal archive
  • Home
  • Archive: 2023
31 Dec 2023
  • 2023
  • V. 22
  • 1
  • (p.63 - 74)

Characterizations of pure and Eu-doped ZnO aerogels nanostructures elaborated by a modified sol gel process

CZU: 53.043

DOI: https://doi.org/10.53081/mjps.2023.22-1.04

Authors:

Fatiha Bedhouche, Djamel Djouadi, Ahcene Soualah, Azeddine Chelouche, Tahar Touam

Summary:

Herein we report on the structural and optical properties of pure and Eu-doped (3% at.) ZnO aerogels nanostructures (ZnO-ans) synthesized by sol-gel associated with drying at supercritical conditions of isopropanol (254 °C, 54 bars). The samples were investigated using X- ray diffraction (XRD), SEM, UV-visible spectroscopy, FTIR and photoluminescence (PL). XRD studies exhibit the formation of a high crystal quality ZnO wurtzite hexagonal structure. The UV- visible measurements point out that the absorption intensity and the band gap energy increase after Eu-doping. FTIR analysis confirms the formation of ZnO phase and reveals a shift toward longer wavenumber of the Zn-O absorption band after Eu -doping. SEM images show that Eu3+ ions lead to change the morphology of ZnO crystalline from pastille to sphere. PL measurements reveal a decrease of UV luminescence intensity and an increase of the visible one due to Eu-doping.

Download PDF

        

CC BY

Files

Download PDF

Views & Downloads

  • Views 503
  • Downloads 334

Archives

  • 2023 (8)
  • 2022 (11)
  • 2021 (17)
  • 2020 (8)
  • 2019 (15)
  • 2018 (26)
  • 2017 (19)
  • 2016 (33)
  • 2015 (28)
  • 2014 (28)
  • 2013 (41)
  • 2012 (44)
  • 2011 (48)
  • 2010 (48)
  • 2009 (60)
  • 2008 (67)
  • 2007 (37)
  • 2006 (52)
  • 2005 (68)

Keywords

  • ZnO
  • Eu-doping
  • supercritical isopropanol
  • structure
  • morphology
  • photoluminescence
Logo Logo

GHITU INSTITUTE OF ELECTRONIC
ENGINEERING AND NANOTECHNOLOGIES
INSTITUTE OF APPLIED PHYSICS
STATE UNIVERSITY OF MOLDOVA
PHYSICAL SOCIETY OF MOLDOVA

Contact Info

You can contact us in one of the following ways

  • Email: mjps@nanotech.md
  • Phone: +(373 22) 739060, +(373 22) 737092

© Copyright 2026

  • Developed by Morari Constantin