A New Ultrafine Luminescent La2O3:Eu3+ Aerogel

Gels. 2023 Jul 29;9(8):615. doi: 10.3390/gels9080615.

Abstract

This paper reports on the synthesis and characterization of La2O3:Eu3+ luminescent aerogels fabricated by the sol-gel method and the supercritical drying technique. The % mol concentration of the Eu3+ ion was varied to study the effects on the luminescent properties of the aerogels. XRD and TEM analysis showed that the La2O3:Eu3+ aerogels exhibited a semi-crystalline behavior regardless of whether the concentration of europium was increased. SEM micrographs revealed a porous structure in the aerogels, which were composed of quasi-spherical nanoparticles that were interconnected and formed coral-shaped agglomerates. Photoluminescence spectroscopy characterization showed that the aerogels had an infrared emission located at λ = 793 nm, and the maximum photoluminescence emission intensity was observed for the aerogel with 50% Eu3+. The results demonstrate that, without heat treatment, it is possible to manufacture luminescent aerogels of rare-earth oxides that can be used in opto-electronic devices.

Keywords: aerogels; luminescence; rare earths.

Grants and funding

This research was funded by Conacyt project A1-S-28234 and by the Instituto Politecnico Nacional through SIP-IPN projects 20231213, 20231223. And The APC was funded by Secretaria de Investigacion y Posgrado by the IPN.