Data di Pubblicazione:
2019
Abstract:
The ability to tune and enhance the properties of luminescent materials is essential for enlarging their application potential. Recently, the modulation of the photoluminescence emission of lanthanide-doped ferroelectric perovskites by applying an electric field has been reported. Herein, we show that the ferroelectric order and, more generally the polar order, has a direct effect on the photoluminescence of Eu3+ in the model BaZrxTi1-xO3 perovskite even in the absence of an external field. The dipole arrangement evolves with increasing xfrom long-range ferroelectric order to short-range order typical of relaxors until the non-polar paraelectric BaZrO3 is achieved. The cooperative polar interactions existing in the lattice (x < 1) promote the off-center displacement of the Eu3+ ion determining a change of the lanthanide site symmetry and, consequently, an abrupt variation of the photoluminescence emission with temperature. Each type of polar order is characterized by a distinct photoluminescence behaviour.
Tipologia CRIS:
01.01 - Articolo in rivista
Keywords:
PIEZOELECTRIC PROPERTIES; LUMINESCENT MATERIALS; ELECTRIC-FIELD; BATIO3; ENHANCEMENT; EUROPIUM; STRAIN; MODULATION; CERAMICS; RAMAN
Elenco autori:
Canu, G.; Bottaro, G.; Buscaglia, M. T.; Costa, C.; Condurache, O.; Curecheriu, L.; Mitoseriu, L.; Buscaglia, V.; Armelao, L.
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