4.6 Article

Investigation of novel Eu doped SrDy2O4 microphosphor for thermoluminescence dosimetry

Journal

JOURNAL OF LUMINESCENCE
Volume 231, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jlumin.2020.117781

Keywords

SrDy2O4; Solid state diffusion; Thermoluminescence; Photoluminescence; Trapping parameters; T-m-T-stop analysis; Initial rise method

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Funding

  1. Chhatrapati Shahu Maharaj Research Training and Human Development Institute (SARTHI), Pune
  2. Council of Industrial and Scientific Research (CSIR), India

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The thermoluminescence properties of novel SrDy2O4: Eu microphosphor synthesized via solid state diffusion method were investigated. The as-prepared microphosphor exhibited orthorhombic phase with irregular shaped particles and showed emission bands in the red region with prominent peaks corresponding to Eu3+ ion transitions. Optimum concentrations of 1% Eu dopant in SrDy2O4 phosphor showed favorable thermoluminescence glow curve for high dose radiation dosimetry applications.
Herein, we report the thermoluminescence properties of novel SrDy2O4: Eu microphosphor synthesized via facile solid state diffusion method. The phase purity, crystal structure, surface morphology, photoluminescence, and dosimetric properties were examined by XRD, SEM, photoluminescence spectroscopy, and thermoluminescence techniques, respectively. The as-prepared microphosphor revealed an orthorhombic phase having irregular shaped particles with an average size of approximately similar to 1.4-1.6 mu m. The photoluminescence studies showed emission bands in the red region with prominent peaks centered at similar to 594 nm and similar to 625 nm corresponding to D-5(0)-> F-7(1) and D-5(0)-> F-7(2) transitions of Eu3+ ion. The thermoluminescence properties of gamma-irradiated SrDy2O4: Eu phosphors were investigated. The systematic study on optimum concentrations of dopants was performed by varying the Eu concentration from 0.5 to 3 mol %. The favorable thermoluminescence glow curve was obtained for 1% Eu doped SrDy2O4 phosphor at 203 degrees C. The SrDy2O4: 1% Eu phosphor showed a linear TL response in the range from 1 Gy to 4 kGy gamma dose. The whole peak method, variable heating rate method, T-m-T-stop technique and Initial Rise Method (IRM) is carried out for trap level analysis and to experimentally determine the activation energy. The trapping parameters of glow curves i.e. frequency factor (s), order of kinetics (b), etc are estimated by Glow Curve Deconvolution (GCD) method. The potential thermoluminescence dosimetric properties of SrDy2O4: Eu phosphor provides a promising system for high dose radiation and environmental dosimetric application.

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