首页> 美国卫生研究院文献>Scientific Reports >Origin of anomalous giant dielectric performance in novel perovskite: Bi0.5−xLaxNa0.5−xLixTi1−yMyO3 (M = Mg2+ Ga3+)
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Origin of anomalous giant dielectric performance in novel perovskite: Bi0.5−xLaxNa0.5−xLixTi1−yMyO3 (M = Mg2+ Ga3+)

机译:新型钙钛矿中异常巨介电性能的起源:Bi0.5-xLaxNa0.5-xLixTi1-yMyO3(M = Mg2 +Ga3 +)

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摘要

Dielectric properties and dielectric relaxation behaviors of A/B sites co-substituted Bi0.5Na0.5TiO3 perovskite-type ferroelectrics are reported. The Bi0.5−xLaxNa0.5−xLixTi1−yMyO3 (M = Mg2+, Ga3+) exhibits anomalous giant dielectric permittivity (ε’) of ~105 under a heterogeneous constitution with easily discernible grain and grain boundary conductivity. The lone pairs substitution theory as well as extrinsic disorders are used to clarify the significant structural evolution and the origin of the dielectric performance. A bigger free volume promotes the anomalous relaxation between oxygen sites, and the polarization direction on the nanoscale deviates from the average polarization direction at its ferroelectric state. Furthermore, no obvious phase transition indicates the considerable static substitutional disorder at the Bi/Na sites, which facilitates delocalized conduction of oxygen ions in the intermediate temperature range.
机译:报道了A / B位共取代的Bi0.5Na0.5TiO3钙钛矿型铁电体的介电性能和介电弛豫行为。 Bi0.5-xLaxNa0.5-xLixTi1-yMyO3(M = Mg 2 + ,Ga 3 + )的异常介电常数(ε')为〜10 < sup> 5 在具有易于辨别的晶粒和晶界导电性的异质结构下。孤对取代理论以及外在失调用于阐明重要的结构演变和介电性能的起源。较大的自由体积促进了氧位点之间的异常弛豫,并且纳米级的极化方向偏离了其铁电态的平均极化方向。此外,没有明显的相变表明Bi / Na位点存在明显的静态取代障碍,这有利于在中等温度范围内氧离子的离域传导。

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