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Photolumiscent Properties of Nanorods and Nanoplates Y2O3:Eu3+
Authors:Ana Paula de Moura  Larissa Helena de Oliveira  Elaine Cristina Paris  Máximo Siu Li  Juan Andrés  José Arana Varela  Elson Longo  Ieda Lucia Viana Rosa
Affiliation:1.Departamento de Química,Universidade Federal de S?o Carlos,S?o Carlos,Brazil;2.Instituto de Química,Universidade Estadual Paulista,Araraquara,Brazil;3.Instituto de Física de S?o Carlos, USP,S?o Carlos,Brazil;4.Departament de Química Física y Analítica,Universitat Jaume I,Castello de la Plana,Spain
Abstract:Nanorods and nanoplates of Y2O3:Eu3+ powders were synthesized through the thermal decomposition of the Y(OH)3 precursors using a microwave-hydrothermal method in a very short reaction time. These powders were analyzed by X-ray diffraction, field emission scanning electron microscopy, Fourrier transform Raman, as well as photoluminescence measurements. Based on these results, these materials presented nanoplates and nanorods morphologies. The broad emission band between 300 and 440 nm ascribed to the photoluminescence of Y2O3 matrix shifts as the procedure used in the microwave-hydrothermal assisted method changes in the Y2O3:Eu3+ samples. The presence of Eu3+ and the hydrothermal treatment time are responsible for the band shifts in Y2O3:Eu3+ powders, since in the pure Y2O3 matrix this behavior was not observed. Y2O3:Eu3+ powders also show the characteristic Eu3+ emission lines at 580, 591, 610, 651 and 695 nm, when excited at 393 nm. The most intense band at 610 nm is responsible for the Eu3+ red emission in these materials, and the Eu3+ lifetime for this transition presented a slight increase as the time used in the microwave-hydrothermal assisted method increases.
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