4.7 Article

Effect of film thickness on NO2 gas sensing properties of sprayed orthorhombic nanocrystalline V2O5 thin films

Journal

APPLIED SURFACE SCIENCE
Volume 416, Issue -, Pages 511-520

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.apsusc.2017.04.097

Keywords

Nanocrystalline V2O5 thin films; Chemical spray pyrolysis; XPS; NO2 gas sensora

Funding

  1. DAE-BRNS, Mumbai, India [2013/36/29-BRNS/2351]
  2. Physics Instrumentation Facility Centre (PIFC), Department of Physics, Shivaji University, Kolhapur

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The nanocrystalline V2O5 thin films with different thicknesses have been grown onto the glass substrates using chemical spray pyrolysis (CSP) deposition method. The XRD study shows that the films exhibit an orthorhombic crystal structure. The narrow scan X-ray photoelectron spectrum of V-2p core level doublet gives the binding energy difference of 7.3 eV, indicating that the V5+ oxidation state of vanadium. The FE-SEM micrographs show the formation of nanorods-like morphology. The AFM micrographs show the high surface area to volume ratio of nanocrystalline V2O5 thin films. The optical study gives the band gap energy values of 2.41 eV, 2.44 eV, 2.47 eV and 2.38 eV for V2O5 thin films deposited with the thicknesses of 423 nm, 559 nm, 694 nm and 730 nm, respectively. The V2O5 film of thickness 559 nm shows the NO2 gas response of 41% for 100 ppm concentration at operating temperature of 200 degrees C with response and recovery times of 20 s and 150 s, respectively. Further, it shows the rapid response and reproducibility towards 10 ppm NO2 gas concentration at 200 degrees C. Finally, NO2 gas sensing mechanism based on chemisorption process is discussed. (C) 2017 Published by Elsevier B.V.

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