The development of sustainable luminescent inks is attracting increasing attention for applications in security printing, bio-imaging, and visualization technologies. Rare-earth-doped YPO4 nanophosphors are particularly promising due to their high efficiency, chemical stability, and well-defined emission features. In this work, we present a simple and eco-friendly strategy to formulate fully water-based luminescent inks by combining Eu3+:YPO4 (5 mol% Eu3+) nanophosphors, synthesized via a microwave-assisted method, with sodium alginate (SA) as a dispersant and rheology modifier. Different grades of SA were investigated to identify the conditions that optimize both dispersion stability and optical performance. Suspensions containing 2 wt% SA and a Eu3+:YPO4/SA ratio of 1:10 (w/w) exhibited excellent colloidal stability, shear-thinning behavior, and anti-thixotropic properties. ζ-potential and photoluminescence analyses confirmed strong interactions between SA chains and Eu3+:YPO4 nanoparticles, enabling long-term stability while preserving the characteristic emission of the phosphor. Notably, the SA matrix contributed to enhanced luminescence in the 350–400 nm range, resulting in a dual-emission response from both polymer and nanophosphor. These findings provide a clear proof-of-concept for cost-effective, solvent-free luminescent inks based on environmentally friendly components, highlighting their potential for future integration in anti-counterfeiting and security printing applications.

Stable water-based luminescent suspensions of Eu3+:YPO4nanophosphors in sodium alginate medium: Sustainable inks for potential anticounterfeiting applications

Mortalo' C.
;
Zin V.;Capelli R.;Pasquali L.;Deambrosis S. M.;Miorin E.;
2025

Abstract

The development of sustainable luminescent inks is attracting increasing attention for applications in security printing, bio-imaging, and visualization technologies. Rare-earth-doped YPO4 nanophosphors are particularly promising due to their high efficiency, chemical stability, and well-defined emission features. In this work, we present a simple and eco-friendly strategy to formulate fully water-based luminescent inks by combining Eu3+:YPO4 (5 mol% Eu3+) nanophosphors, synthesized via a microwave-assisted method, with sodium alginate (SA) as a dispersant and rheology modifier. Different grades of SA were investigated to identify the conditions that optimize both dispersion stability and optical performance. Suspensions containing 2 wt% SA and a Eu3+:YPO4/SA ratio of 1:10 (w/w) exhibited excellent colloidal stability, shear-thinning behavior, and anti-thixotropic properties. ζ-potential and photoluminescence analyses confirmed strong interactions between SA chains and Eu3+:YPO4 nanoparticles, enabling long-term stability while preserving the characteristic emission of the phosphor. Notably, the SA matrix contributed to enhanced luminescence in the 350–400 nm range, resulting in a dual-emission response from both polymer and nanophosphor. These findings provide a clear proof-of-concept for cost-effective, solvent-free luminescent inks based on environmentally friendly components, highlighting their potential for future integration in anti-counterfeiting and security printing applications.
2025
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
Eu3+:YPO4 nanophosphors
Luminescence
Rheology
Sodium alginate-based inks
Stability
Stabilization effect
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/577001
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