A New Anti‐Counterfeiting Feature Relying on Invisible Luminescent Full Color Images Printed with Lanthanide‐Based Inks
Новый элемент защиты от подделок на основе невидимых люминесцентных полноцветных изображений, напечатанных чернилами на основе лантанидов
2014-05-22
SCID: 54.1/9jgwdkca
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anti-counterfeiting security featuresinkjet printinginvisible luminescent imageslanthanide-based inksspectral prediction model
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Abstract (AI)
Europium and terbium trisdipicolinate complexes are inkjet printed onto paper with commercially available desktop inkjet printers. Together with a commercial blue luminescent ink, the red‐emitting luminescent ink containing europium and the green‐emitting luminescent ink containing terbium are used to reproduce accurate full color images that are invisible under white light and appear under a 254 nm UV light. Such invisible luminescent images are attractive anti‐counterfeiting security features. The luminescent prints have a color range (gamut) nearly as wide as the gamut of a standard sRGB display. The gamut of the luminescent prints is determined by relying on a simple model predicting the relative spectral radiant emittances of any printed luminescent color halftone. The model is also used to establish the correspondence between the surface coverages of the printed luminescent inks and the emitted color of these luminescent halftones. The accuracy of the spectral prediction model is very good and can be rationalized by the absence of quenching when the luminescent lanthanide complexes are printed in superposition with the other luminescent materials.
Key Findings
1
A simple model accurately predicted the spectral radiant emittance and emitted color of printed luminescent halftones from ink surface coverages.
2
Combining lanthanide-based red and green inks with commercial blue luminescent ink reproduced accurate full-color images invisible under white light and visible under 254 nm UV illumination.
3
Europium and terbium trisdipicolinate complexes were successfully inkjet-printed with desktop printers to create red- and green-emitting security inks.
4
The luminescent prints achieved a color gamut nearly as wide as standard sRGB displays, supporting high-quality full-color anti-counterfeiting features.
5
The model’s high accuracy was attributed to the absence of quenching when lanthanide complexes were superposed with other luminescent materials.
Research Object
Invisible luminescent full-color images printed on paper using lanthanide-based inks
Research Subject
Anti-counterfeiting performance, color gamut, and spectral emission behavior of the printed luminescent images, including the relationship between ink surface coverage and emitted color
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2014-05-22
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