Welcome to LookChem.com Sign In | Join Free

Science Details

Home > Chemical Encyclopedia > Science List > Details
  • Thermoluminescence study of aluminum oxide doped with therbium and thulium

  • Add time:07/22/2019    Source:sciencedirect.com

    In this work, α-Al2O3 doped either with Tb3+ or Tm3+ was prepared by combustion synthesis techniques for thermoluminescent (TL) ionizing radiation dosimetry applications. In this method, the reactants (aluminum nitrate, urea and therbium or thulium nitrate) are ignited in a muffle furnace at temperatures as low as 500 °C. This synthesis route is an alternative technique to the conventional fabrication methods of materials based on α-Al2O3 (Czochralsky, Vernuil), where high melting temperatures and reducing atmospheres are required. After combustion, the samples were annealed at temperatures ranging from 1000 to 1400 °C for 4 h in order to obtain the pure α-phase structure and were then irradiated with a Co-60 gamma radiation source. The annealed samples present a well defined TL glow peak with a maximum at approximately 200 °C and linear TL response in the dose range 0.5–5 Gy. It was observed that a 0.1 mol% concentration of Tb3+ or Tm3+ and annealing at 1400 °C optimize the TL sensitivity. The highest sensitivity was found for Tm3+ doped samples which were approximately 25 times more sensitive than Tb3+ doped samples. These results strongly suggest that combustion synthesis is a suitable technique to prepare doped aluminum oxide material and that Tm3+ doped aluminum oxide is a potential material for TL radiation dosimetry.

    We also recommend Trading Suppliers and Manufacturers of THULIUM NITRATE (cas 14985-19-4). Pls Click Website Link as below: cas 14985-19-4 suppliers

    Prev:Optical and electro-catalytic studies of nanostructured thulium oxide for vitamin C detection
    Next:Thermoluminescence of aluminum oxide co-doped with terbium and thulium obtained via combustion synthesis)

  • Back】【Close 】【Print】【Add to favorite
Periodic Table
    Related Products