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Dense Sm and Mn Co-Doped BaTiO3 Ceramics with High Permittivity

机译:高介电常数致密Sm和Mn共掺杂BaTiO3陶瓷

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摘要

The structure, valence state, and dielectric properties of (Ba1−xSmx)(Ti0.99Mn0.01)O3 (BSTM) (x = 0.02‒0.07) ceramics prepared via a high temperature (1400 °C/12 h) solid state reaction were investigated. A homogeneous and dense microstructure was observed in all samples. With increasing Sm content, the crystal structure changed from tetragonal (x ≤ 0.06) to cubic (x = 0.07) and unit cell volume (V0) decreased continuously, which was mainly due to the substitution of Ba2+ ions by smaller Sm3+ ions in the perovskite lattice. Electron paramagnetic resonance investigation revealed that Mn ions were reduced from high valence to low valence under the role of Sm3+ donor, and only Mn2+ ions were observed at x = 0.07. The Curie temperature (Tc) moved to lower values, from 105.5 down to 20.4 °C, and the x = 0.07 sample satisfied Y5V specification with high permittivity (ε′RT > 13,000) and low loss (tan δ < 0.03).
机译:通过高温(1400°C / 12 h)固态反应制备的(Ba1-xSmx)(Ti0.99Mn0.01)O3(BSTM)(x = 0.02‒0.07)陶瓷的结构,价态和介电性能被调查了。在所有样品中均观察到均匀且致密的微观结构。随着Sm含量的增加,晶体结构从四方(x≤0.06)变为立方(x = 0.07),晶胞体积(V0)连续减小,这主要是由于Ba 2 + 3 + 离子。电子顺磁共振研究表明,在Sm 3 + 供体的作用下,Mn离子从高价态还原为低价态,x =时仅观察到Mn 2 + 离子。 0.07。居里温度(Tc)从105.5降至20.4°C降至更低的值,并且x = 0.07的样品满足Y5V规范,具有高介电常数(ε'RT> 13,000)和低损耗(tanδ<0.03)。

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