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Updated: Jan 10, 2026

Low-energy Cathodoluminescence for OxyNitride Phosphors
Published on: November 15, 2016
Inorganic Ho-Based Metal Halide Scintillators with Narrow-Band Red Emission for X-ray Imaging
Chao Xu1, Jinbiao Pan1, Ting Zhang2
1State Key Laboratory of Flexible Electronics (LoFE) & Institute of Advanced Materials (IAM), Nanjing University of Posts & Telecommunications, 9 Wenyuan Road, Nanjing 210023, P. R. China.
Abstract:
Rare-earth halide perovskites have demonstrated great potential for optoelectronic applications; however, the development of highly efficient narrow-band red-emitting materials remains insufficient, which severely limits their practical application. Herein, we successfully synthesized Cs2NaHoCl6 via partial substitution of Cs+ with Na+ in Cs3HoCl6 crystals. The incorporation of Na+ ions reduces the crystal symmetry, suppresses electron-phonon coupling, and inhibits nonradiative transitions. Without altering the Cl-Ho charge transfer process, this strategy indirectly enhances the probability of electronic transitions to the characteristic energy levels, resulting in an order-of-magnitude enhancement in the red emission of Ho3+ at 660 nm. The color purity is also significantly improved, with a full width at half maximum (fwhm) of 19.25 nm and CIE coordinates of (0.713, 0.283). When applied to X-ray detection and imaging, Cs2NaHoCl6 exhibits a relative light yield of 24,939 photons/MeV and a detection limit lower than that of the commercial scintillator CsI:Tl. Its performance remains stable under continuous X-ray irradiation for 30 min. Furthermore, the fabricated scintillator film outperformed a commercial GOS scintillating screen under the same testing conditions. This study not only provides fundamental insights into narrow-band deep-red-emitting rare-earth halide perovskites but also demonstrates their promising application in X-ray detection and imaging.
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