4.8 Article

Photoresponsive supramolecular coordination polyelectrolyte as smart anticounterfeiting inks

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NATURE COMMUNICATIONS
卷 12, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-021-21677-4

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资金

  1. National Natural Science Foundation of China [21871075, 21502039, 21771050]
  2. Natural Science Foundation of Hebei Province [B2018202134, B2016202149, B2016202147, B2017202048]
  3. Tianjin Natural Science Foundation [19JCQNJC04900]
  4. Program for Top 100 Innovative Talents in Colleges and Universities of Hebei Province [SLRC2019023]
  5. Singapore Academic Research Fund [RT12/19]
  6. Singapore Agency for Science, Technology, and Research (A*STAR) AME IRG grant [A1883c0005]

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In this work, the authors demonstrate coordination dependent photochromic luminescence in a supramolecular coordination polyelectrolyte for multiple information authentication.
While photoluminescence printing is a widely applied anticounterfeiting technique, there are still challenges in developing new generation anticounterfeiting materials with high security. Here we report the construction of a photoresponsive supramolecular coordination polyelectrolyte (SCP) through hierarchical self-assembly of lanthanide ion, bis-ligand and diarylethene unit, driven by metal-ligand coordination and ionic interaction. Owing to the conformation-dependent photochromic fluorescence resonance energy transfer between the lanthanide donor and diarylethene acceptor, the ring-closure/ring-opening isomerization of the diarylethene unit leads to a photoreversible luminescence on/off switch in the SCP. The SCP is then utilized as security ink to print various patterns, through which photoreversible multiple information patterns with visible/invisible transformations are realized by simply alternating the irradiation with UV and visible light. This work demonstrates the possibility of developing a new class of smart anticounterfeiting materials, which could be operated in a noninvasive manner with a higher level of security. Photoluminescence printing is a widely applied anticounterfeiting technique but there are still challenges in developing new generation anticounterfeiting materials providing a high security level. Here, the authors demonstrate coordination dependent photochromic luminescence in a supramolecular coordination polyelectrolyte for multiple information authentication.

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