3.8 Article

Blue-emitting polystyrene scintillators for plastic scintillation dosimetry

Journal

BIO-ALGORITHMS AND MED-SYSTEMS
Volume 17, Issue 3, Pages 191-197

Publisher

WALTER DE GRUYTER GMBH
DOI: 10.1515/bams-2021-0088

Keywords

blue laser dye; fluorescent dye; gamma radiation detector; plastic scintillator; plastic scintillation dosimetry; polystyrene scintillator; wavelength shifter; WLS

Funding

  1. Centre for Technology Transfer CITTRU from the Jagiellonian University
  2. National Science Centre of Poland [2019/35/B/ST2/03562]
  3. Jagiellonian University [CRP/0641.221.2020]

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The study aimed to find the best blue-emitting fluorescent substance for plastic scintillator used for gamma radiation dosimetry, by manufacturing plastic scintillators with different fluorescent additives and comparing their light outputs to commercial scintillators. Results showed that the synthesized scintillators performed similarly to commercial ones in converting gamma radiation into blue light efficiently.
Objectives: Purpose of this research was to find the best blue-emitting fluorescent substance for plastic scintillator used for gamma radiation dosimetry. Scintillator should convert gamma radiation into blue light with high efficiency. Methods: Plastic scintillators with fixed concentration of various fluorescent additives, called wavelength shifters, absorbing ultraviolet light and emitting blue light were manufactured by radical bulk polymerization of styrene. Light output were measured and compared to the light output of commercial plastic scintillator. Results: Performed measurements of charge Compton spectra confirmed usefulness of majority of researched substances as wavelength shifters in plastic scintillators with emission maximum at blue range of visible light. Conclusions: Plastic scintillation dosimeter may be constructed from manufactured polystyrene-based scintillators. Performance of synthesized scintillators is close to commercial polystyrene scintillators.

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