Published March 2015 | Version v1
Journal article

Ammonia sensing properties of V-doped ZnO:Ca nanopowders prepared by sol–gel synthesis

  • 1. Dipartimento di Fisica e di Scienze della Terra, Università di Messina, Viale Ferdinando Stagno d'Alcontres 31, I-98166 Messina (Italy)
  • 2. Dipartimento di Ingegneria Elettronica, Chimica e Ingegneria Industriale, Università di Messina, Viale Ferdinando Stagno d'Alcontres 31, I-98166 Messina (Italy)
  • 3. Laboratory of Physics of Materials and Nanomaterials Applied at Environment, Faculty of Sciences in Gabes, 6072 Gabes (Tunisia)
  • 4. Al Imam Mohammad Ibn Saud Islamic University (IMSIU), College of Sciences, Department of Physics, Riyadh 11623 (Saudi Arabia)

Description

V-doped ZnO:Ca nanopowders with different V loading were prepared by sol–gel synthesis and successive drying in ethanol under supercritical conditions. Characterization data of nanopowders annealed at 700 °C in air, revealed that they have the wurtzite structure. Raman features of V-doped ZnO:Ca samples were found to be substantially modified with respect to pure ZnO or binary ZnO:Ca samples, which indicate the substitution of vanadium ions in the ZnO lattice. The ammonia sensing properties of V-doped ZnO:Ca thick films were also investigated. The results obtained demonstrate the possibility of a fine tuning of the sensing characteristics of ZnO-based sensors by Ca and V doping. In particular, their combined effect has brought to an enhanced response towards NH3 compared to bare ZnO and binary V-ZnO and Ca-ZnO samples. Raman investigation suggested that the presence of Ca play a key role in enhancing the sensor response in these ternary composite nanomaterials. - Graphical abstract: V-doped ZnO:Ca nanopowders prepared by sol–gel synthesis possess enhanced sensing characteristics towards NH3 compared to bare ZnO. - Highlights: • V-doped ZnO:Ca nanopowders with different V loading were prepared by sol–gel synthesis. • Raman features of V-doped ZnO:Ca samples indicate the substitution of V ions in the ZnO lattice. • Combined effects of dopants have brought to an enhanced response to NH3 compared to ZnO. • Ca play a key role in enhancing the sensor response of ternary V-doped ZnO:Ca composites

Availability note (English)

Available from http://dx.doi.org/10.1016/j.jssc.2015.02.021

Additional details

Identifiers

DOI
10.1016/j.jssc.2015.02.021;
PII
S0022-4596(15)00071-7;

Publishing Information

Journal Title
Journal of Solid State Chemistry
Journal Volume
226
Journal Page Range
p. 192-200
ISSN
0022-4596
CODEN
JSSCBI

Optional Information

Copyright
Copyright (c) 2015 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.