Halogen‐Regulated Luminescent Silver(I) Halide Complexes and the Gel Scintillation Screen for X‐Ray Imaging

ABSTRACT Metal halide scintillators have attracted continuously increasing interest for low‐dose and high‐resolution X‐ray imaging, yet typical luminescent silver halides suffer from severe hygroscopicity and exciton quenching caused by Ag–Ag cluster aggregation. To address these challenges, we design and report mononuclear five‐coordinate silver(I) halide complexes (dppb) 2 AgX·DMSO (X = I, Br, Cl) with 1,2‐Bis(diphenylphosphino)benzene (dppb) ligand. Halogen substitution enables tunable broadband emission, while the chloride analogue achieves efficient thermally activated delayed fluorescence (TADF) and a high PLQY of 76%. The chloride analogue possesses more rigid AgClP 4 coordination environment compared with its bromide and iodide counterparts, enabling restricts excited‐state relaxation, suppresses non‐radiative decay, and preserves favorable singlet‐triplet energetics and spin‐orbit coupling. Meanwhile, the chloride analogue shows superior scintillation with a high light yield of 26631 photons/MeV, and a detection limit of 304.67 nGy air s −1 . Furthermore, a high spatial resolution of 20.2 lp mm −1 for X‐ray imaging is achieved based on the transparent Ag‐Cl composite gel scintillator screen. This work not only provides a promising design principle for achieving high scintillation in TADF‐type Ag(I) halide complexes by halogen regulation, but also provide a new platform for Ag(I) halide complexes in X‐ray imaging.

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Publication Details

Journal
Advanced Functional Materials
Published
2026-09-12
DOI
https://doi.org/10.1002/adfm.78388
Primary Topic
Perovskite Materials and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Halogen‐Regulated Luminescent Silver(I) Halide Complexes and the Gel Scintillation Screen for X‐Ray Imaging

Binbin Su, Мaxim S. Моlokeev, Lihan Chen, Xuefei He et al.
Advanced Functional Materials
Perovskite Materials and Applications
article

Halogen‐Regulated Luminescent Silver(I) Halide Complexes and the Gel Scintillation Screen for X‐Ray Imaging

Binbin Su, Мaxim S. Моlokeev, Lihan Chen, Xuefei He, Zhiguo Xia, Yongsheng Sun, Kai Han, Liang Li
article en

Abstract

ABSTRACT Metal halide scintillators have attracted continuously increasing interest for low‐dose and high‐resolution X‐ray imaging, yet typical luminescent silver halides suffer from severe hygroscopicity and exciton quenching caused by Ag–Ag cluster aggregation. To address these challenges, we design and report mononuclear five‐coordinate silver(I) halide complexes (dppb) 2 AgX·DMSO (X = I, Br, Cl) with 1,2‐Bis(diphenylphosphino)benzene (dppb) ligand. Halogen substitution enables tunable broadband emission, while the chloride analogue achieves efficient thermally activated delayed fluorescence (TADF) and a high PLQY of 76%. The chloride analogue possesses more rigid AgClP 4 coordination environment compared with its bromide and iodide counterparts, enabling restricts excited‐state relaxation, suppresses non‐radiative decay, and preserves favorable singlet‐triplet energetics and spin‐orbit coupling. Meanwhile, the chloride analogue shows superior scintillation with a high light yield of 26631 photons/MeV, and a detection limit of 304.67 nGy air s −1 . Furthermore, a high spatial resolution of 20.2 lp mm −1 for X‐ray imaging is achieved based on the transparent Ag‐Cl composite gel scintillator screen. This work not only provides a promising design principle for achieving high scintillation in TADF‐type Ag(I) halide complexes by halogen regulation, but also provide a new platform for Ag(I) halide complexes in X‐ray imaging.

Advanced Functional Materials
Xi'an University of Science and Technology (CN), Peoples' Friendship University of Russia (RU), Russian New University (RU), Xi’an University (CN), Institute of Physics (RU), Siberian Federal University (RU), Shaanxi University of Science and Technology (CN), South China University of Technology (CN)
National Natural Science Foundation of China, China Postdoctoral Science Foundation, Russian Science Foundation, Fundamental Research Funds for the Central Universities, Basic and Applied Basic Research Foundation of Guangdong Province
Openalex Percentile: Top 20%
Perovskite Materials and Applications
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