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Spectroscopic, vibrational and structural insights into LaYbO3:Pr3+ and LaLuO3:Pr3+,Tb3+ perovskites at ambient and high-pressure conditions

Abstract: The interlanthanide perovskites LaYbO3:Pr3+ and LaLuO3:Pr3+,Tb3+ were synthesized by a solid-state reaction and characterized at ambient conditions by means of X-ray diffraction (XRD), Raman spectroscopy and photoluminescence techniques. XRD measurements have shown that the synthesis method provided samples with pure perovskite phase (space group Pnma) for LaYbO3, while in the case of the LaLuO3 compound small traces of Lu2O3 could be found after several annealing. Up to 13 Raman active modes were observed in the Raman spectra of the studied perovskites and theoretical calculations performed for LaYbO3 allowed to assign their symmetry. Regarding their optical properties, the emission from Tb3+ ions at B sites of the ABO3 perovskite could be distinguished. Moreover, NIR emission from Pr3+ was observed in the LaLuO3 perovskite at -1000 nm and 1250-1600 nm. Emission in these spectral regions could be relevant for Si-based solar cell applications and fiber optic amplifiers, respectively. Moreover, the stability of both perovskites under high-pressure conditions has been studied spectroscopically, finding that LaYbO3 is stable up to 19 GPa and that LaLuO3 undergoes a possible pressure-induced phase transition at -21-24 GPa. This makes LaLuO3 the first interlanthanide perovskite showing phase transition under 40 GPa

 Autoría: Candela M.T., Aguado F., Monteseguro V., González J.A., Valiente R.,

 Fuente: Ceramics International, 2025, 51(12,B), 16539-16550

 Editorial: Elsevier

 Fecha de publicación: 01/05/2025

 Nº de páginas: 12

 Tipo de publicación: Artículo de Revista

 DOI: 10.1016/j.ceramint.2024.09.151

 ISSN: 0272-8842,1873-3956

 Proyecto español: PID2021-127656NB-I00

 Proyecto europeo: info:eu-repo/grantAgreement/EC/H2020/629161/EU/NanoCrystals in Fibre Lasers/NCLas/

 Url de la publicación: https://doi.org/10.1016/j.ceramint.2024.09.151

Autoría

MARINA TERESA CANDELA DE AROCA

JESUS ANTONIO GONZALEZ GOMEZ