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◆ Nature Communications2026-02-10· Scintillation

Ultrafast scintillating metal-organic framework films

Lorena Dhamo, Jacopo Perego, Irène Villa, Charl X. Bezuidenhout, Ilaria Mattei, Alessia Landella, Silvia Bracco, Angiolina Comotti, Angelo Monguzzi

原始摘要(英文原文)· Original abstract
Compositionally engineered metal-organic frameworks are designed and used to fabricate ultrafast scintillating films. The inclusion of hafnium ions in the nodes of the metal-organic framework enhances the interaction with ionizing radiation, partially compensating for the low density of the porous material and increasing the scintillation yield. The high diffusivity of molecular excitons within the framed conjugated ligands allows bimolecular annihilation processes that partially quench the system luminescence, resulting in fast scintillation pulses in the hundreds of picoseconds time scale. Despite the quenching, the gain in scintillation yield achieved is large enough to maintain the film light yield above 104 ph MeV-1 under soft X-rays. These high efficiencies and fast emission kinetics are obtained at room temperature in a technologically attractive solid-state configuration, placing the metal-organic framework platform in a prominent position for the realization of the next generation of fast scintillation counters for high-energy physics studies and medical imaging applications. Dhamo et al. report metal-organic framework based X-ray scintillating films with hafnium oxide clusters as linking nodes and conjugated ligands as emitting centres. It reveals that the diffusion-mediated bimolecular processes lead to fast scintillation kinetics down to 150 ps and light yield over 104 ph MeV-1.
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