Thermoluminescence properties of copper-doped TiO2 nanoparticles synthesised using co-precipitation method for high-dose gamma dosimetry

Author:

Sharmila Kankanady1ORCID,Prabhu Nimitha S2,Kamath Sudha D2,Kamat Vinayak A13ORCID,Swaroop Kumaraswamy14,Somashekarappa Hiriyur M1

Affiliation:

1. Mangalore University Centre for Application of Radioisotope and Radiation Technology (CARRT), , Mangalagangotri 574199, India

2. Manipal Academy of Higher Education Department of Physics, Manipal Institute of Technology, , Manipal 576104, India

3. Anjuman Arts, Science, Commerce College and P.G. Centre Department of Physics, , Bhatkal 581320, India

4. G M Institute of Technology Department of Physics, , Davangere 577006, India

Abstract

Abstract In this work, copper (Cu)-doped titanium dioxide (TiO2) nanoparticles were prepared by co-precipitation. For studying the morphological properties, the copper doped titanium dioxide (TiO2:Cu) nanocrystalline structures were characterised through powder X-ray diffraction and field emission scanning electron microscopy. The prepared TiO2:Cu nanoparticles were annealed at two temperatures, namely, copper doped titanium dioxide annealed at 723 K temperayure (TC1) and copper doped titanium dioxide annealed at 1073 K temperayure (TC2). The annealed samples were exposed to gamma radiation of 10-Gy-to-25-kGy doses. Thermoluminescence and dosimetric properties were evaluated using a thermoluminescent dosemeter reader. The glow curves of the TiO2:Cu nanoparticles were analysed. The thermoluminescence (TL) response of samples exhibited good linearity between 100 Gy and 10 kGy with high sensitivity of 1755.25 (TC1) and 5587.06 (TC2) counts g−1Gy−1 and a minimum detectable dose of 2.9666 Gy (TC1) and 0.4892 Gy (TC2). The fading of signals was observed by 12% for TC1 and 10% for TC2 samples after a week of storage.

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health,Radiology, Nuclear Medicine and imaging,General Medicine,Radiation,Radiological and Ultrasound Technology

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