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Ln‐MOF‐Based Hydrogel Films with Tunable Luminescence and Afterglow Behavior for Visual Detection of Ofloxacin and Anti‐Counterfeiting Applications

Xiaolin YuDepartment of Natural Sciences Novosibirsk State University 2 Pirogov Str. Novosibirsk 630090 RussiaAlexey A. RyadunNikolaev Institute of Inorganic Chemistry Siberian Branch of the Russian Academy of Sciences 3 Lavrentiev Ave. Novosibirsk 630090 RussiaDmitry I. PavlovDepartment of Natural Sciences Novosibirsk State University 2 Pirogov Str. Novosibirsk 630090 RussiaTatiana Y. GuselnikovaNikolaev Institute of Inorganic Chemistry Siberian Branch of the Russian Academy of Sciences 3 Lavrentiev Ave. Novosibirsk 630090 RussiaАndrei S. PotapovDepartment of Natural Sciences Novosibirsk State University 2 Pirogov Str. Novosibirsk 630090 RussiaVladimir P. FedinDepartment of Natural Sciences Novosibirsk State University 2 Pirogov Str. Novosibirsk 630090 Russia
2024en
ABI

Аннотация

Abstract Highly selective and sensitive quantitative detection of ofloxacin (OFX) at ultralow concentrations in aqueous media and development of new afterglow materials remains a challenge. Herein, a new 2D water‐stable lanthanide metal–organic framework (NIIC‐2‐Tb) is proposed, which exhibits high selectivity towards OFX through the luminescence quenching with the lowest detection limit (1.1 × 10 −9 M ) reported to date and a fast response within 6 s. In addition, the luminescent detection of OFX by NIIC‐2‐Tb is not affected by typical components of blood plasma and urine. The excellent sensing effect of NIIC‐2‐Tb is further utilized to prepare a composite functional sensing carrageenan hydrogel material for the rapid detection of OFX in meat in real time and the first discovery of impressive afterglow in MOF‐based hydrogels. This study not only presents novel Ln‐MOF materials and Ln‐MOF‐based hydrogel films for luminescent sensing of OFX, but also demonstrates color‐tunable luminescent films with afterglow, which expands the application of composite luminescent materials for detection and anti‐counterfeiting.

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