ABSTRACT Colorful scintillators with multilayer structures have attracted considerable attention for advanced radiography, but their layered architectures suffer from intrinsic interlayer excitation and photon crosstalk problems. Here, we design and report a single‐phased Cs 3 YCl 6 :Eu 3+ scintillator with tunable blue/red emissions via in situ x‐ray‐induced Eu 3+ reduction. Partial transient reduction of Eu 3+ with 4f→4f transition to Eu 2+ with 5d→4f transition in Cs 3 YCl 6 is attributed to low‐lying defect states, confirmed by thermoluminescence and density functional theory calculations. Thanks to multicolor characteristics, the colorful Cs 3 YCl 6 :Eu 3+ scintillator achieves x‐ray dose real‐time dosimetry within the range from 0.068 to 3.387 mGy, with a maximum relative sensitivity of 233.9% mGy − 1 . Furthermore, it exhibits multicolor x‐ray imaging with a resolution of 10 lp mm −1 , allowing simultaneous material discrimination and x‐ray dose dosimetry. This work provides a new design principle for the innovation of colorful scintillators and high‐precision multicolor x‐ray detection technologies.
Zhao et al. (Mon,) studied this question.