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Fabrication of cubical-shaped particles/flakes/rods and flower-like morphology of In2O3 nanostructures: Enhanced photocatalytic dye degradation and gas sensor applications

  • B. Shanmugapriya
  • , N. Moorthy
  • , P. Dhamodharan
  • , S. Suthakaran
  • , T. Meganathan
  • , A. Dinesh
  • , Lalitha Gnanasekaran
  • , Manikandan Ayyar
  • Kalaimahal College of Arts & Science
  • Anna University
  • Southeast University, Nanjing
  • Karpagam Institute of Technology
  • Karpagam Academy of Higher Education

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

In this study, cubic indium oxide nanostructures (c-In2O3) were synthesized via facile hydrothermal method and their performances in photocatalytic and ethanol gas sensor applications were studied. The influence of hydrothermal processing times had great control over the c-In2O3 nanostructures. Structural analysis revealed that the cubic and rhombohedral phases were observed as the hydrothermal processing times increased. The morphological investigation (HRSEM) of c-In2O3 nanostructures exhibited different morphologies, including irregular shapes, flower-like, and multi-pod structures. The HRTEM study also confirmed that the c-In2O3 nanostructures had a lattice value of 0.32 nm, corresponding to the (222) plane and the SAED pattern showed that the c-In2O3 nanostructures were polycrystalline in nature. Band gap energy was calculated by UV–Vis DRS spectroscopy and varied from 3.38 to 3.45 eV. Photoluminescence (PL) spectra exhibited strong deep-level emissions in the visible region. The photocatalytic activity of c-In2O3 photocatalyst and methylene blue (MB) dye was tested under UV light. The alkaline medium showed higher efficiency (54%), compared to the acidic and neutral mediums. For gas sensing measurements, the ethanol gas based on c-In2O3 nanostructures exhibited good response and recovery times, along with better long-term stability. The better gas sensing capabilities of c-In2O3 nanostructures was potential candidates in the ethanol gas sensor industry.

Original languageEnglish
Article number113763
JournalInorganic Chemistry Communications
Volume173
DOIs
StatePublished - Mar 2025

Keywords

  • Gas sensor
  • HR-SEM
  • Photocatalytic activity
  • XPS
  • c-InO nanostructures

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