WO2023079531 - METAL-ORGANIC FRAMEWORK BASED X-RAY IMAGING SCINTILLATOR

National phase entry is expected:
Publication Number WO/2023/079531
Publication Date 11.05.2023
International Application No. PCT/IB2022/060706
International Filing Date 07.11.2022
Title **
[English] METAL-ORGANIC FRAMEWORK BASED X-RAY IMAGING SCINTILLATOR
[French] SCINTILLATEUR D'IMAGERIE À RAYONS X BASÉ SUR UN RÉSEAU ORGANOMÉTALLIQUE
Applicants **
KING ABDULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGY 4700 King Abdullah University of Science and Technology Thuwal 23955-6900, SA
Inventors
ABDELSABOOR, Omar F. Mohammed 4700 King Abdullah University of Science and Technology Thuwal 23955-6900, SA
EDDAOUDI, Mohamed 4700 King Abdullah University of Science and Technology Thuwal 23955-6900, SA
SHEKHAH, Osama 4700 King Abdullah University of Science and Technology Thuwal 23955-6900, SA
WANG, Jianxin 4700 King Abdullah University of Science and Technology Thuwal 23955-6900, SA
Priority Data
63/276,814   08.11.2021   US
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Quotation for National Phase entry

Country StagesTotal
China Filing1378
EPO Filing, Examination6683
Japan Filing589
South Korea Filing575
USA Filing, Examination2635
MasterCard Visa

Total: 11860

The term for entry into the National Phase has expired. This quotation is for informational purposes only

Abstract[English] An X-ray imaging film (100) for transforming X-ray radiation into visible light by scintillating, includes a polymer matrix (160), a metal-organic framework, MOF, (110), and an organic chromophore (130) which is configured to experience thermally activated delayed fluorescence. The MOF (110) and the organic chromophore (130) are encapsulated by the polymer matrix (160), and an energy transfer efficiency from the MOF (110) to the organic chromophore (130) is larger than 95%.[French] Un film d'imagerie à rayons X (100) pour transformer un rayonnement de rayons X en lumière visible par scintigraphie, comprend une matrice polymère (160), un réseau organométallique, MOF, (110), et un chromophore organique (130) qui est configuré pour subir une fluorescence retardée activée thermiquement. Le MOF (110) et le chromophore organique (130) sont encapsulés par la matrice polymère (160), et un rendement de transfert d'énergie du MOF (110) au chromophore organique (130) est supérieur à 95 %.
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