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Synthesis of Samarium-incorporated X-ray-sensitive nanoparticles and hydrogels: Diverse applications in radiation monitoring and dynamic information display.

Created on 25 Jul 2026

Authors

Zetong Zhang, Yujie Chen, Yuanyao Chen, Leipeng Li, Yonggang Wu, Yanmin Yang, Hailei Zhang

Published in

Smart molecules : open access. Pages e70048. Apr 27, 2026. Epub Apr 27, 2026.

Abstract

With the advancement of X-ray-activated persistent luminescent phosphors, the exploration of smart materials with tunable luminescence and afterglow properties is a promising topic. In this study, the red-emission X-ray scintillators, Samarium(Sm3+)-doped NaLuF4, with regular micromorphology and well-controlled afterglow property were synthesized under mild conditions. Both of Sm3+-doped α-NaLuF4 and β-NaLuF4, abbreviated as α-NaLuF4:xSm3+ and β-NaLuF4:ySm3+ (x, y = 1, 3%, 5%, 10%, and 15%), respectively, emit the maximum emission peak at 598 nm (4G5/2 → 6H7/2) under X-rays, while only Sm3+-doped β-NaLuF4 exhibits remarkable afterglow ability. The optimal luminescent property can be obtained when the doping rate is fixed at 3%. Then β-NaLuF4:3%Sm3+ was surface modified and incorporated into the chemically crosslinked hydrogels to endow X-ray-activated luminescence or afterglow abilities in the obtained hybrid hydrogel. With the self-healing ability, the β-NaLuF4:3%Sm3+-incorporated hydrogel can be further programmed with other types of hydrogels to enable tunable emission behaviors and time-dependent color changes. By taking advantage of these features, the hydrogels were programmed as a display panel that can be used for extra safety information encryption.

PMID:
42500711
Bibliographic data and abstract were imported from PubMed on 25 Jul 2026.

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