Bi 0.5 (Na 0.7 K 0.2 Li 0.1) 0.5 tio3陶瓷材料的电导率和介电性能

K. Ch.Varada Rajulu, Tilak B, K. Sambasiva Rao
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引用次数: 10

摘要

采用煅烧、干压、烧结等固相反应途径制备了Bi0.5(Na0.7K0.2Li0.1)0.5 TiO3(BNKLT)多晶材料。研究了材料的介电和电导率参数随频率(45Hz ~ 5MHz)和温度(RT-600℃)的变化规律。在较高的温度下,由于空间电荷释放的影响,电导率曲线趋于合并。利用Almond和West的形式化方法计算了离子跳变率(ωp)、拟合参数(n(T)、A(T))和载流子浓度(K’)等电导率参数。复合介电常数两个分量的强色散,似乎是与良好离子电导率相关的铁电体的共同特征,被称为低频介电色散(LFDD)。这为获得替代铅基陶瓷的良好候选材料提供了机会。
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Electricalconductivity and Dielectric Properties of Bi 0.5 (Na 0.7 K 0.2 Li 0.1 ) 0.5 TiO 3 Ceramic Material
Solid state reaction route is used by adopting calcination, dry pressing and sintering for the preparation of polycrystalline Bi0.5(Na0.7K0.2Li0.1)0.5 TiO3(BNKLT) material. Studies of dielectric and conductivity parameters of the ma- terial were studied as a function of frequency(45Hz to 5MHz) and temperature(RT-600℃). At higher temperatures the conductivity curves were found to be merging, due to the effect of release of space charge.The conductivity parameters such as ion-hopping rate (ωp), fitting parameters (n(T), A(T)) and the charge carrier concentration(K ' ) terms have been calculated using Almond and West formalism.A strong dispersion in both the components of complex dielectric constant, appear to be a common feature in ferroelectrics associated with good ionic conductivity and is referred to as the low frequency dielectric dispersion(LFDD).This offered an opportunity to obtain a good candidate for replacing the lead based ceramics.
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