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Characterization and thermoluminescence behavior of beta irradiated NaBaBO3 phosphor synthesized by combustion method

DOI:10.1016/j.ceramint.2018.12.202 期刊:Ceramics International 出版年份:2018 更新时间:2025-09-23 15:23:52
摘要: NaBaBO3 host material was synthesized using the combustion method. In order to optimize the performance of the material, effects of sintering temperatures varying from 600 to 1000 °C were investigated. The sintering temperature and dwell time were found to have pronounced effects on the pure NaBaBO3 material. X-ray powder diffraction (XRD) and scanning electron microscopy (SEM) techniques were used to confirm the phase formation and examine the surface morphology of the prepared powder material, respectively. TL behavior of NaBaBO3 was studied at various beta doses. It is seen that the sample exhibits well resolved TL glow peak at a peak temperature about 175 °C and corresponding TL intensity increases with the increasing beta dose. However, TL glow peak slightly shifts to lower temperature with the increasing beta dose level. This is the first TL report of a phosphor with a NaBaBO3 host. The TL kinetic parameters were estimated by the peak shape (PS) method and CGCD software. TL glow curves of NaBaBO3 consist of several traps and exhibited second order kinetics. A possible TL mechanism was also discussed using the energy level model. The obtained results can provide valuable knowledge related to the investigation of the intrinsic nature characteristics of NaBaBO3 in research fields pertaining to dosimetry.
作者: Mehmet Oglakci,Sibel Ak?a,Yusuf Ziya Halefoglu,Tamer Dogan,Mehmet Ayvacikli,Yüksel Karabulut,Mustafa Topaksu,Nurdogan Can
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To characterize and study the thermoluminescence behavior of beta-irradiated NaBaBO3 phosphor synthesized by the combustion method, focusing on its structural properties, dose response, heating rate effects, and kinetic parameters for potential dosimetric applications.

NaBaBO3 phosphor was successfully synthesized via the combustion method and characterized as monoclinic. It exhibits thermoluminescence with a glow peak around 175 °C, showing linear dose response and second-order kinetics. Kinetic parameters were determined using peak shape and deconvolution methods, revealing an average activation energy of 1.31 eV. The study provides foundational knowledge on the intrinsic traps in NaBaBO3, suggesting potential for dosimetric applications, with recommendations for future work on doped samples to enhance understanding.

The study is limited to pure NaBaBO3 without dopants; the influence of rare earth elements was not investigated. The TL glow curves may consist of overlapping peaks, requiring deconvolution for accurate analysis. The dose response linearity is not maintained at very low doses (e.g., 0.1 Gy). The synthesis method may introduce impurities if not optimized, as seen with initial sintering at 900 °C without calcination.

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