Low temperature synthesis of tetragonal BaTiO3 by using molten salt
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概要
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Tetragonal BaTiO3 was prepared by reaction of a layered K2Ti2O5 and mixed barium salts (BaCl2 + Ba(NO3)2) at above 700°C. The morphology of the particle was cubic shape and the particle size of the products prepared at 700–1000°C was ∼10 µm, and that of the products prepared at higher temperatures (1100–1200°C) was smaller than that of the products prepared at 700–1000°C. From the chemical analysis no potassium atom was detected and the Ba/Ti ratio in the tetragonal BaTiO3 was 1.00. In the cubic particle of the tetragonal BaTiO3 surface 90° domain boundaries were observed. Lattice parameters and Curie temperature of the tetragonal BaTiO3 were a = 3.995(1) and c = 4.036(1) Å and 130°C, respectively.
著者
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Kumada Nobuhiro
Department of Research Interdisciplinary Graduate School of Medicine and Engineering, University of
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Yonesaki Yoshinori
Department of Research Interdisciplinary Graduate School of Medicine and Engineering, University of
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TAKEI Takahiro
Department of Research Interdisciplinary Graduate School of Medicine and Engineering, University of
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KINOMURA Nobukazu
Department of Research Interdisciplinary Graduate School of Medicine and Engineering, University of
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IIJIMA Takashi
Research Center for Hydrogen Industrial Use and Storage, National Institute of Advanced Industrial S
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OGISO Hideyuki
Department of Research Interdisciplinary Graduate School of Medicine and Engineering, University of
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WADA Satoshi
Department of Research Interdisciplinary Graduate School of Medicine and Engineering, University of
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WATANABE Takayuki
Core Technology Development Headquarters, CANON INC.
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Wada Satoshi
Department Of Physics Graduate School Of Science Tokyo University Of Science
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Kumada N
Interdisciplinary Graduate School Of Medical And Engineering Univ. Of Yamanashi
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Kumada Nobuhiro
Department Of Research Interdisciplinary Graduate School Of Medicine And Engineering University Of Y
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Kinomura Nobukazu
Dep. Of Res. Interdisciplinary Graduate School Of Medicine And Engineering Univ. Of Yamanashi
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Takei Takahiro
Department Of Research Interdisciplinary Graduate School Of Medicine And Engineering
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Kinomura Nobukazu
Department Of Research Interdisciplinary Graduate School Of Medicine And Engineering
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Wada Satoshi
Material Sci. And Technol. Interdisciplinary Graduate School Of Medical And Engineering Univ. Of Yam
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Wada Satoshi
Department Of Applied Physics Faculty Of Engineering Osaka City University
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Iijima Takashi
Research Center For Hydrogen Industrial Use And Storage National Institute Of Advanced Industrial Sc
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Kumada Nobuhiro
Department of Research Interdisciplinary Graduate School of Medicine and Engineering
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OGISO Hideyuki
Department of Research Interdisciplinary Graduate School of Medicine and Engineering, University of Yamanashi
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YONESAKI Yoshinori
Department of Material Chemistry, Graduate School of Engineering, Kyoto University
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Wada Satoshi
Department of Applied Chemistry, Tokyo University of Agriculture & Technology,
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