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Hydrothermal Synthesis and Characterization of Europium-doped Barium Titanate Nanocrystallites 被引量:3

Hydrothermal Synthesis and Characterization of Europium-doped Barium Titanate Nanocrystallites
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摘要 Barium titanate nanocrystallites were synthesized by a hydrothermal technique from barium chloride and tetrabutyl titanate. Single-crystalline cubic perovskite Ba TiO_3 consisting of spherical particles with diameters ranging from 10 to 30 nm was easily achieved by this route. In order to study the influence of the synthesis process on the morphology and the optical properties, barium titanate was also prepared by a solid-state reaction. In this case, only the tetragonal phase which crystallizes above 900 was observed. High-temperature X-ray diffraction measurements were performed to investigate the crystallization temperatures as well as the particle sizes via the Scherrer formula. The lattice vibrations were evidenced by infrared spectroscopy. Eu^(3+)was used as a structural probe, and the luminescence properties recorded from Ba TiO_3 :Eu^(3+)and elaborated by a solid-state reaction and hydrothermal process were compared. The reddish emission of the europium is increased by the nanometric particles. Barium titanate nanocrystallites were synthesized by a hydrothermal technique from barium chloride and tetrabutyl titanate. Single-crystalline cubic perovskite Ba Ti O_3 consisting of spherical particles with diameters ranging from 10 to 30 nm was easily achieved by this route. In order to study the influence of the synthesis process on the morphology and the optical properties, barium titanate was also prepared by a solid-state reaction. In this case, only the tetragonal phase which crystallizes above 900 was observed. High-temperature X-ray diffraction measurements were performed to investigate the crystallization temperatures as well as the particle sizes via the Scherrer formula. The lattice vibrations were evidenced by infrared spectroscopy. Eu^(3+)was used as a structural probe, and the luminescence properties recorded from Ba Ti O_3 :Eu^(3+)and elaborated by a solid-state reaction and hydrothermal process were compared. The reddish emission of the europium is increased by the nanometric particles.
出处 《Nano-Micro Letters》 SCIE EI CAS 2013年第1期57-65,共9页 纳微快报(英文版)
基金 the financial support of the SEP-CONACYT(100764&178817) SIP-IPN(20130664 and 20130665) projects the financial support of this work by ECOSNord/ANUIES/CONACYT program number M09P01
关键词 BATIO3 EUROPIUM NANOCRYSTALLITES Hydrothermal technique BaTiO_3 Europium Nanocrystallites Hydrothermal technique
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