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March 28, 2026Advanced Materials14 citations

Ultra‐High‐Brightness Ln‐MOFs X‐ray Scintillators by Heavy Atoms, Aggregation Effects, and Hydrogen Bonds Restrict Movement

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WJWen‐Kang JiangGuangxi Normal UniversityTHTingting HuangGuangxi Normal UniversityRLRu‐Yan LiGuangxi University

Key Points

  • The aim is to enhance the light yield of Tb-SDB-MOF X-ray scintillators using a four-in-one synergistic strategy.
  • Utilized a four-in-one strategy including heavy atoms, coordination-induced emission, hydrogen bonds, and antenna effects.
  • Constructed Tb-SDB-MOF and studied its X-ray absorption efficiency.
  • Examined the effect of low-concentration formic acid vapor on luminescence switching.
  • Developed a Eu-SDB-MOF@Tb-SDB-MOF heterostructure for advanced applications.
  • Achieved a scintillation light yield of 69,575 photons MeV^-1, a leading level in this field.
  • Demonstrated an ultra-low detection limit of 20.86 nGy/s, significantly below clinical standards.
  • Showed multistage luminescence color switching from gold to deep-red using low-concentration formic acid vapor.

Abstract

The synergistic effect of the "four-in-one" strategy, which includes the heavy atoms effect, coordination-induced emission (CIE), hydrogen bonds locking effect, and efficient antenna effect, was utilized to significantly enhance the light yield of Tb-SDB-MOF X-ray scintillator. Notably, the efficient heavy atoms effect enhances the X-ray absorption efficiency of Tb-SDB-MOF, synergistically with CIE, hydrogen bonds locking restriction of intramolecular motion (RIM), and an energy-matched antenna effect, producing a scintillation light yield of 69,575 photons MeV-1 - a leading level among lanthanide complexes based X-ray scintillators. Meanwhile, the Tb-SDB-MOF X-ray scintillator exhibited an ultra-low detection limit (20.86 nGy/s), which is 264 times lower than the clinical standard, making it an "ultra-low dose" lanthanide complexes based X-ray scintillator. Moreover, low-concentration formic acid vapor selectively quenched the antenna effect of Tb3+ ions within Eu0.08Tb0.92-SDB-MOF, resulting in multistage multicolor luminescence switching from gold→brown→orange→deep-red→red. The Eu-SDB-MOF@Tb-SDB-MOF heterostructure facilitates the development of an advanced multi-functional anti-counterfeiting system by utilizing the highly efficient multicolor luminescence properties of a single crystal. Finally, this work not only opens new avenues for the development of lanthanide complexes based X-ray scintillators with ultrahigh light yield but also expands new horizons for the expansion of multifunctional lanthanide complexes.

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Cite This Study

Jiang et al. (2026) studied this question.

synapsesocial.com/papers/69c772718bbfbc51511e2ea7https://doi.org/10.1002/adma.202520018
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