Phosphorescent supramolecular systems for medicine anticounterfeiting

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Realizing reliable medicine anticounterfeiting with safe and robust materials remains a challenge. A class of edible phosphorescent supramolecules (VB10@α/β-CDs) based on easily available α/β-cyclodextrins (α/β-CDs) and vitamin B10 (VB10) were prepared. Concisely grinding them with water or co-crystallization from aqueous solution, the resulting host−guest complexes VB10@α/β-CDs exhibit a long phosphorescence lifetime of up to 1.16 s and a high photoluminescent quantum yield of up to 86.5%, The encapsulation of α/β-CDs reverses the energy ordering of VB10’s excited singlet states, promotes the formation of the minimum energy crossing point (MECP) between singlet state and triplet state, and therefore boosts phosphorescence. VB10@α/β-CDs are attractive as phosphorescent inks for in-medicine anticounterfeiting because of the advantages of an edible nature, good moisture robustness, room-temperature phosphorescence and circularly polarized luminescence.

Diagram illustrating the photophysical properties of Vitamin B10 (VB10) and its complex with alpha/beta-cyclodextrin (α/β-CD), highlighting weak fluorescence in VB10 and the formation of an edible phosphorescent supramolecule upon complexation. The graphs depict relative energy versus relaxation coordinate, showing different excited states (SA, SX, SC, TA) and energy transitions with labels for phosphorescence (P) and decay without phosphorescence (F).

Wu, WT., Deng, CY., Zhang, ZY. et al. Phosphorescent supramolecular systems for medicine anticounterfeiting. Nat Commun 17, 2635 (2026). https://doi.org/10.1038/s41467-026-69431-y

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