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Effect of potassium content on the dielectric and electrical properties of sodium potassium niobate ceramics

机译:钾含量对铌酸钠钾陶瓷介电和电性能的影响

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(KNa) NbO3 ceramics or KNN is considered as one of the most promising candidates for lead-free piezoelectric applications, because of its high Curie temperature and good electrical properties. However, it is well known that dense and well-sintered KNN ceramics are very difficult to obtain by conventional sintering process because of the high volatility of alkali elements at high temperatures. The major strategy to overcome this problem is simply adding excess alkali metals in the starting composition. KNN ceramics with potassium excess were prepared by high temperature solid state reaction technique. Effect of K excess on the phase structure and electrical properties of KNN ceramics were investigated. The results showed that the single phase orthorhombic perovskite structure was obtained in ceramics. Ferroelectric-paraelectric phase transition temperature was about 370 °C for all the samples. The dielectric permittivity was maximized, the dielectric loss was a minimum and the relative density was found to reach 95% of theoretical density for K content= 53% in KNN system. Impedance study shows the non-Debye type temperature of relaxation phenomenon in the system. Above the ferroelectric paraelectric phase transition temperature, the electrical conduction is governed by the thermal excitation of carriers from oxygen vacancies exhibiting NTCR behavior.
机译:(KNa)NbO3陶瓷或KNN因其居里温度高和良好的电性能而被认为是无铅压电应用中最有希望的候选材料之一。然而,众所周知,由于高温下碱金属元素的高挥发性,致密和良好烧结的KNN陶瓷很难通过常规烧结工艺获得。克服该问题的主要策略是在起始组合物中简单地添加过量的碱金属。采用高温固相反应技术制备了钾过量的KNN陶瓷。研究了钾过量对KNN陶瓷相结构和电性能的影响。结果表明,在陶瓷中获得了单相正交晶钙钛矿结构。所有样品的铁电-顺电相变温度约为370°C。在KNN系统中,当K含量= 53%时,介电常数最大,介电损耗最小,相对密度达到理论密度的95%。阻抗研究显示了系统中非德拜型温度的松弛现象。在铁电顺电相变温度以上,电导受载流子的热激发所控制,这些载流子来自表现出NTCR行为的氧空位。

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