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◆ Light Science & Applications2026-01-26· Scintillator

Highly luminescent organic-inorganic hybrid antimony halide scintillators for real-time dynamic and 3D X-ray imaging

Haixia Cui, Wanjiao Li, Qianxi Li, Shaolong Wang, Mingye Zhu, Yongjing Deng, Shujuan Liu, Qiang Zhao

原始摘要(英文原文)· Original abstract
Abstract Real-time dynamic and three-dimensional (3D) X-ray imaging are the most challenging types of X-ray imaging technology, placing more rigorous standards on scintillators. Lead-based (Pb 2+ ) organic-inorganic hybrid halide (OIHH) scintillators with high X-ray absorption coefficients have been demonstrated to exhibit excellent scintillation performance. However, their toxicity and instability hindered further development, and it is necessary to explore novel low-toxic metal-based OIHHs possessing excellent scintillation performance. Antimony-based (Sb 3+ ) OIHHs are not only environmentally friendly, but also show good stability compared to Pb 2+ -based OIHHs, which make them promising candidates as excellent scintillators. Currently, the understanding of Sb 3+ -based OIHH scintillators for X-ray detection and imaging is still in infancy and requires further exploration. Herein, we designed two Sb 3+ -based OIHH crystals of (BPP) 2 SbCl 5 (CP1) and (BPP) 2 SbCl 5 0.5 H 2 O (CP2), which have very similar crystal structures except the introduction of water molecules in CP2. Experimental and theoretical results reveal that CP2 has larger lattice distortion and smaller freedom of motion, which can promote the self-trapped excitons emissions. A flexible scintillator screen based on CP2 crystals was prepared and applied for real-time dynamic and 3D X-ray imaging, which is the first time for Sb 3+ -based OIHH scintillators and significantly broadens the potential of Sb 3+ -based OIHH scintillators.
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Highly luminescent organic-inorganic hybrid antimony halide scintillators for real-time dynamic and 3D X-ray imaging — 科研速览 Science Skim