To cite this paper use one of the standards below:
A tellurite glass-particle composite was designed to enable NIR-activated persistent luminescence through the coupling of upconversion and persistent luminescent materials. The system combines Zn1.33Ga1.33Sn0.33O4:Cr3+ (ZGSO:Cr3+) particles, which emit in the deep-red/NIR region, with a 70TeO2–15GeO2–5K2O–10Bi2O3:Yb3+,Er3+ (TGKB:Yb3+,Er3+) tellurite glass matrix capable of converting 980 nm excitation into visible emission. The spectral overlap between the Er3+ upconversion emission and the excitation range of ZGSO:Cr3+ allows indirect activation of persistent luminescence under NIR light. The results suggest a radiative emission–reabsorption pathway and highlight glass-particle composites as multifunctional photonic platforms for deep-red/NIR persistent emission activated by biologically safer excitation wavelengths.
With nearly 200,000 papers published, Galoá empowers scholars to share and discover cutting-edge research through our streamlined and accessible academic publishing platform.
Learn more about our products:
This proceedings is identified by a DOI , for use in citations or bibliographic references. Attention: this is not a DOI for the paper and as such cannot be used in Lattes to identify a particular work.
Check the link "How to cite" in the paper's page, to see how to properly cite the paper