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Blanc, P; Hamel, M; Dehe-Pittance, C; Rocha, L; Pansu, RB; Normand, S NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT 2014, 750, 1-11.
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT 2014, 750, 1-11.
Blanc, P; Hamel, M; Dehe-Pittance, C; Rocha, L; Pansu, RB; Normand, S
This work deals with the preparation and evaluation of plastic scintillators for neutron/gamma pulse shape discrimination (PSD). We succeeded in developing a plastic scintillator with good neutron/gamma discrimination properties in the range of what is already being commercialized. Several combinations of primary and secondary fluorophores were implemented in chemically modified polymers. These scintillators were fully characterized by fluorescence spectroscopy and under neutron irradiation. The materials proved to be stable for up to 5 years without any degradation of PSD properties. They were then classified in terms of their PSD capabilities and light yield. Our best candidate, 28.6 wt% of primary fluorophore with a small amount of secondary fluorophore, shows promising PSD results and is particularly suited to industrial development, because its preparation does not involve the use of expensive or exotic compounds. Furthermore, even at the highest prepared concentration, high stability over time was observed. As a proof of concept, one sample with dimensions 109 mm phi Chi 114 mm height ( approximate to 1 L) was prepared.
Le PPSM en couverture de Chemical Science
Clémence Allain lauréate de la médaille de bronze du CNRS 2017
Le Dr Clémence Allain lauréate de l'ERC starting grant 2016