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Hydrothermal Synthesis and Characterization of Europium-doped Barium Titanate Nanocrystallites

机译:thermal掺杂钛酸钡纳米微晶的水热合成与表征

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Barium titanate nanocrystallites were synthesized by a hydrothermal technique from barium chloride and tetrabutyl titanate. Single-crystalline cubic perovskite BaTiO3 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. Eu3+ was used as a structural probe, and the luminescence properties recorded from BaTiO3:Eu3+and elaborated by a solid-state reaction and hydrothermal process were compared. The reddish emission of the europium is increased by the nanometric particles.
机译:通过水热技术由氯化钡和钛酸四丁酯合成钛酸钡纳米微晶。通过这种方法很容易获得由直径为10到30 nm的球形颗粒组成的单晶立方钙钛矿BaTiO3。为了研究合成工艺对形态和光学性质的影响,还通过固相反应制备了钛酸钡。在这种情况下,仅观察到在900°以上结晶的四方相。进行了高温X射线衍射测量,以通过Scherrer公式研究结晶温度以及粒径。晶格振动通过红外光谱证明。以Eu3 +为结构探针,比较了BaTiO3:Eu3 +记录的发光特性,并通过固相反应和水热法对其进行了详细的描述。纳米颗粒增加了emission的微红色发射。

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