Synthesis of Crystallized Barium Molybdate Film via Chemical Solution Processing

Stoichiometric BaMoO 4 thin films were prepared by chemical solution processing. The characterization of the crystal structure and surface morphology of the film was carried out. The influences of the solvent and the anneal temperature on film fabrication were studied. The photoluminescence properti...

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Published inFerroelectrics Vol. 357; no. 1; pp. 201 - 205
Main Authors Hu, Guo-Bing, Yu, Ping, Xiao, Ding-Quan, Liu, Yang, Guo, Qing-Wu, Tian, Yun-Fei
Format Journal Article Conference Proceeding
LanguageEnglish
Published London Taylor & Francis Group 01.01.2007
Taylor and Francis
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Abstract Stoichiometric BaMoO 4 thin films were prepared by chemical solution processing. The characterization of the crystal structure and surface morphology of the film was carried out. The influences of the solvent and the anneal temperature on film fabrication were studied. The photoluminescence properties of the BaMoO 4 films were measured. The results reveal that the BaMoO 4 thin films are well crystallized films even near room temperature, the films derived from glycerine solution are characteristic of oriented growth when they are annealed at above 550°C, and the films given a green emission peaking at 518 nm with the excitation of 20 eV photons.
AbstractList Stoichiometric BaMoO4 thin films were prepared by chemical solution processing. The characterization of the crystal structure and surface morphology of the film was carried out. The influences of the solvent and the anneal temperature on film fabrication were studied. The photoluminescence properties of the BaMoO4 films were measured. The results reveal that the BaMoO4 thin films are well crystallized films even near room temperature, the films derived from glycerine solution are characteristic of oriented growth when they are annealed at above 550 deg C, and the films given a green emission peaking at 518 nm with the excitation of 20 eV photons.
Stoichiometric BaMoO 4 thin films were prepared by chemical solution processing. The characterization of the crystal structure and surface morphology of the film was carried out. The influences of the solvent and the anneal temperature on film fabrication were studied. The photoluminescence properties of the BaMoO 4 films were measured. The results reveal that the BaMoO 4 thin films are well crystallized films even near room temperature, the films derived from glycerine solution are characteristic of oriented growth when they are annealed at above 550°C, and the films given a green emission peaking at 518 nm with the excitation of 20 eV photons.
Author Xiao, Ding-Quan
Liu, Yang
Guo, Qing-Wu
Hu, Guo-Bing
Yu, Ping
Tian, Yun-Fei
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Cites_doi 10.1016/j.materresbull.2005.04.032
10.1016/j.ssc.2005.01.016
10.1016/j.radmeas.2004.03.019
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Issue 1
Keywords Annealing
Scheelite structure
Chemical bath deposition
Surface morphology
Crystallization
Photoluminescence
XRD
Thin films
Barium Molybdates
chemical solution processing
thin film
Barium molybdate
oriented- growth
Crystal structure
Language English
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References Dmitry A. S. (CIT0007) 2004; 38
Aghamalyan N. R. (CIT0008) 2001; 13
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Ryu J. H. (CIT0004) 2005; 40
Yoshimura M. (CIT0011) 2000; 25
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Tarte P. (CIT0012) 1972; 28
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Snippet Stoichiometric BaMoO 4 thin films were prepared by chemical solution processing. The characterization of the crystal structure and surface morphology of the...
Stoichiometric BaMoO4 thin films were prepared by chemical solution processing. The characterization of the crystal structure and surface morphology of the...
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SubjectTerms Barium molybdate
chemical solution processing
Condensed matter: electronic structure, electrical, magnetic, and optical properties
Dielectric thin films
Dielectrics, piezoelectrics, and ferroelectrics and their properties
Exact sciences and technology
Insulators
Optical properties and condensed-matter spectroscopy and other interactions of matter with particles and radiation
Optical properties of specific thin films
oriented-growth
Physics
thin film
Title Synthesis of Crystallized Barium Molybdate Film via Chemical Solution Processing
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