Polymorphism of BaTiO3 Acceptor Doped with Mn3+, Fe3+, and Ti3+
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Scholar |
Otros documentos de la autoría: Prades Tena, Marta; Masó, Nahum; Beltrán Mir, Héctor; Cordoncillo, Eloisa; West, Anthony R.
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Mostrar el registro completo del ítemcomunitat-uji-handle:10234/9
comunitat-uji-handle2:10234/7053
comunitat-uji-handle3:10234/8639
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http://dx.doi.org/10.1111/j.1551-2916.2008.02397.x |
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Título
Polymorphism of BaTiO3 Acceptor Doped with Mn3+, Fe3+, and Ti3+Fecha de publicación
2008-07Editor
Wiley; The American Ceramic SocietyISSN
0002-7820Cita bibliográfica
Journal of the American Ceramic Society, 91, 7, p. 2364–2366Tipo de documento
info:eu-repo/semantics/articleVersión de la editorial
http://onlinelibrary.wiley.com/doi/10.1111/j.1551-2916.2008.02397.x/abstractResumen
The effect of Mn doping on the cubic to hexagonal phase transition temperature in BaTiO3 has been determined by quenching samples with different Mn contents from a range of temperatures. Under conditions of equilibrating ... [+]
The effect of Mn doping on the cubic to hexagonal phase transition temperature in BaTiO3 has been determined by quenching samples with different Mn contents from a range of temperatures. Under conditions of equilibrating samples in air over the range 1000°–1400°C, cubic solid solutions BaTi1−xMnxO3−δ form over the range 0≤x≤0.015(5), whereas hexagonal solid solutions form for x≥0.02, depending on the temperature. The results are compared with those on doping BaTiO3 with Fe3+ and observations made concerning acceptor doping with Ti3+. [-]
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© 2008 The American Ceramic Society
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