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Tunable solid-state fluorescent materials for supramolecular encryption.


ABSTRACT: Tunable solid-state fluorescent materials are ideal for applications in security printing technologies. A document possesses a high level of security if its encrypted information can be authenticated without being decoded, while also being resistant to counterfeiting. Herein, we describe a heterorotaxane with tunable solid-state fluorescent emissions enabled through reversible manipulation of its aggregation by supramolecular encapsulation. The dynamic nature of this fluorescent material is based on a complex set of equilibria, whose fluorescence output depends non-linearly on the chemical inputs and the composition of the paper. By applying this system in fluorescent security inks, the information encoded in polychromic images can be protected in such a way that it is close to impossible to reverse engineer, as well as being easy to verify. This system constitutes a unique application of responsive complex equilibria in the form of a cryptographic algorithm that protects valuable information printed using tunable solid-state fluorescent materials.

SUBMITTER: Hou X 

PROVIDER: S-EPMC4423226 | biostudies-literature | 2015 Apr

REPOSITORIES: biostudies-literature

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Tunable solid-state fluorescent materials for supramolecular encryption.

Hou Xisen X   Ke Chenfeng C   Bruns Carson J CJ   McGonigal Paul R PR   Pettman Roger B RB   Stoddart J Fraser JF  

Nature communications 20150422


Tunable solid-state fluorescent materials are ideal for applications in security printing technologies. A document possesses a high level of security if its encrypted information can be authenticated without being decoded, while also being resistant to counterfeiting. Herein, we describe a heterorotaxane with tunable solid-state fluorescent emissions enabled through reversible manipulation of its aggregation by supramolecular encapsulation. The dynamic nature of this fluorescent material is base  ...[more]

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