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Synthesis of bulk-size transparent gadolinium oxide-polymer nanocomposites for gamma ray spectroscopy
Wen Cai1, Qi Chen2, Nerine Cherepy3
1Department of Materials Science and Engineering, University of California, Los Angeles, CA 90095-1595, USA. Tel: +1 310 825 4127 ; School of Materials Science and Engineering, Tongji University, Shanghai 201804, China.
Abstract:
Heavy element loaded polymer composites have long been proposed to detect high energy X- and γ-rays upon scintillation. The previously reported bulk composite scintillators have achieved limited success because of the diminished light output resulting from fluorescence quenching and opacity. We demonstrate the synthesis of a transparent nanocomposite comprising gadolinium oxide nanocrystals uniformly dispersed in bulk-size samples at a high loading content. The strategy to avoid luminescence quenching and opacity in the nanocomposite was successfully deployed, which led to the radioluminescence light yield of up to 27 000/MeV, about twice as much as standard commercial plastic scintillators. Nanocomposites monoliths (14 mm diameter by 3 mm thickness) with 31 wt% loading of nanocrystals generated a photoelectric peak for Cs-137 gamma (662 keV) with 11.4% energy resolution.

