AI Article Synopsis

  • Counterfeiting is a significant global issue, and fluorescent materials are essential for developing high-security technology.
  • This study focuses on creating fluorescence counterfeiting solutions using lead-metal-organic frameworks (Pb-MOF) and perovskite (MAPbBr) integrated into cellulose fibers.
  • The resulting materials exhibit unique fluorescence properties, which enhance product security, allowing for features like reversible writing with green fluorescence under UV light.

Article Abstract

Counterfeiting has caused great concern all over the world. What's more, the fluorescent materials play an important role in technological research and development for high-security. In this work, lead-metal-organic framework (Pb-MOF) and perovskite (MAPbBr) were used in papers to achieving fluorescence counterfeiting. Pb-MOF, as the template or precursor of MAPbBr, were in-situ generated on the surface of cellulose fibers (CFs) to preparing into hand sheets (Pb-MOF@CFs). Through the analysis of experimental results, it was found that ligands, reaction systems, addition sequences of drugs, time, etc. would affect the deposition of Pb-MOF on the surface of CFs. Using CHNHBr (MABr) as the anti-counterfeiting ink to write on Pb-MOF@CFs, the orange writing leaped across the paper, which caused by Pb in Pb-MOF chemically reacting with MABr forming MAPbBr. The orange writing displayed green fluorescence under 365 nm ultraviolet lamp excitation. The orange writing with green fluorescence could be extinguished and reconstructed, which had promise for reuse. In addition, fluorescent security papers (MAPbBr@Pb-MOFs@CFs) were prepared by immersing Pb-MOF@CFs in MABr solution. The fluorescence of MAPbBr@Pb-MOFs@CFs opened when the surface of it was scraped under 365 nm ultraviolet lamp. This unique fluorescence property was very important in improving the security of products. Consequently, the ongoing research on perovskite and MOFs materials is of great significance.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2024.132151DOI Listing

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