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- W3022238214 endingPage "1087" @default.
- W3022238214 startingPage "1081" @default.
- W3022238214 abstract "Scanning codes with the capability for stimuli-triggered decryption are urgently needed to prevent information leakage and counterfeiting. Compared to conventional 1D barcodes and 2D QR codes, 3D codes show promise in this field thanks to the presence of four different colors in the icon, with great information variability. Up to now, encrypted 3D code development has primarily focused on chemical reaction-based systems, leading to information decryption in an irreversible transformation manner. Herein, a novel and intelligent 3D code encryption system has been constructed with full reversibility and a fast response, taking advantage of the luminescent vapochromism of cyanostilbene-based supramolecular assemblies. Information in the inkjet-printed 3D code is specifically decrypted through vapor fuming with chlorinated solvents, while it is reversibly encrypted upon removing the vapor. Hence, this study provides a novel and effective strategy for obtaining high-performance smart scanning codes." @default.
- W3022238214 created "2020-05-13" @default.
- W3022238214 creator A5009542885 @default.
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- W3022238214 creator A5074539674 @default.
- W3022238214 date "2020-01-01" @default.
- W3022238214 modified "2023-10-15" @default.
- W3022238214 title "Cyanostilbene-based vapo-fluorochromic supramolecular assemblies for reversible 3D code encryption" @default.
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- W3022238214 doi "https://doi.org/10.1039/d0nh00186d" @default.
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- W3022238214 hasPublicationYear "2020" @default.
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