Published October 2015 | Version v1
Miscellaneous

Thermoluminescent properties of Spinel-type oxides present in the Ternary system In2O3-TiO2-Mg O in air at 1350 degrees C

  • 1. Universidad de Sonora, Departamento de Investigacion en Polimeros y Materiales, Apdo. Postal 130, 83000 Hermosillo, Sonora (Mexico)
  • 2. Universidad de Sonora, Departamento de Ciencias Quimico-Biologicas, Apdo. Postal 130, 83000 Hermosillo, Sonora (Mexico)
  • 3. Universidad de Sonora, Departamento de Investigacion en Fisica, Apdo. Postal 5-088, 83190 Hermosillo, Sonora (Mexico)

Description

Full text: In the ternary system In2O3-TiO2-Mg O exists a solid solution Mg2-xIn2xTi1-xO4 (0≤ x ≤1) with spinel-type structure between MgIn2O4 and Mg2TiO4 (F. Brown et. al., 2000). In order to analyze their thermoluminescent (Tl) response, we obtained the spinel-type oxides with x= 0 (s1), 0.25 (s2), 0.5 (s3), 0.75 (s4), and 1 (s5) by a solid state reaction at 1350 degrees C in air. The X-ray patterns showed a spinel type structure for these compounds. The powders were exposed to beta particles from 90Sr. The glow curve showed by s1 and s3 were hundreds of times more intense than s2, s4 and s5. At 50 Gy, s1 exhibits a main Tl maximum located at 200 degrees C, with two shoulders at 119 and 250 degrees C. The s3 oxide reveals a simple and wide glow curve at ≅195 degrees C with a Tl maximum located at 203 degrees C at 21.33 Gy. The peaks of the s1 and s3 oxide show a shift to lower temperatures and this increases its intensity as the irradiation dose increases. The lineal behavior observed for s1 and s3 were between 1.33-150 Gy and 10.66-341 Gy correspondingly, without evidence of saturation signal. After cycle 4, the s1 oxide has small variations in the relative sensitivity, with percentages below 1%. On the other hand, s3 reveals a relative sensitivity variation of 2.7%. Besides this, the standard deviation after ten consecutive irradiation-Tl readout cycles for s1 was 3.07 % and for s3 was 1%. The minimum detectable dose obtained were 0.5 Gy for s1 and 5.65 Gy for s3. These results suggest a possible application of Mg1.5InTi0.5O4 in dosimetry. (Author)

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Additional details

Publishing Information

Publisher
Sociedad Mexicana de Irradiacion y Dosimetria
Imprint Place
Mexico D. F. (Mexico)
Imprint Pagination
1 p.

Conference

Title
15. International Symposium on Solid State Dosimetry
Original Conference Title
15. Conferencia Internacional sobre Dosimetria de Estado Solido
Dates
26-30 Sep 2015
Place
Leon, Guanajuato (Mexico)