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One-Dimensional Copper-Doped Rb 2 AgI 3 with Efficient Sky-Blue Emission as a High-Performance X-ray Scintillator.

Jiali YaoDan HuangXudong HuHaiming ChengDayang WangXiaoming LiWensheng YangRenguo Xie
Published in: ACS omega (2024)
Scintillators have garnered heightened attention for their diverse applications in medical imaging and security inspection. Nonetheless, commercial scintillators encounter challenges with costly rare-earth metals and toxic elements like thallium (Tl), driving the need for sustainable, cost-effective, and eco-friendly alternatives to meet contemporary X-ray detection demands. This study focuses on exploring the potential of Cu + -doped Rb 2 AgI 3 as an effective metal halide (MH) scintillator. One-dimensional (1D) Rb 2 AgI 3 and Cu + -doped Rb 2 AgI 3 single crystals (SCs) were synthesized by using the conventional temperature-lowering crystallization method. When excited by UV light, Cu + -doped SCs emitted a broad sky-blue light at 490 nm with a high photoluminescence (PL) quantum yield (PLQY) of 76.48%. Remarkably, under X-ray excitation, these Cu + -doped SCs demonstrated an outstanding light yield of 36,293 photons MeV -1 , a relatively low detection threshold of 1.022 μGy air s -1 , and a rapid scintillation decay time of 465 ns. The prepared translucent scintillation film has good uniformity and flexibility, with a high spatial resolution of 10.2 lp mm -1 . These results position Cu + -doped Rb 2 AgI 3 as a leading candidate among promising X-ray scintillators, offering superior scintillation light yield, excellent stability, and nontoxicity.
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