Department of Materials Science, Sichuan University , 610064, P. R. China.
ACS Appl Mater Interfaces. 2013 Nov 13;5(21):10409-17. doi: 10.1021/am403448r. Epub 2013 Oct 25.
For potassium-sodium niobate, the piezoelectric constant (d33) was usually improved by sacrificing the Curie temperature (TC). In this work, a material system of 0.992(K0.46Na0.54)0.965Li0.035Nb(1-x)Sb(x)O3-0.008BiScO3 has been designed and prepared with the aim of achieving both a large d33 and a high TC at the same time. The chemical compositions are found to be homogeneously distributed in the ceramics. The introduction of Sc is found to be responsible for different grain sizes. The rhombohedral-tetragonal phase coexistence zone lies in the composition range of 0.02<x ≤ 0.06. The ceramic is thermally stable in terms of ferroelectric properties. The change in the domain-wall activities induced by the configuration variation of defect dipoles upon annealing is believed to be responsible for the variation in the d33 at different temperatures. The ceramic with x = 0.025 shows a good comprehensive performance of d33 ≈ 325 pC/N and k(p) ≈ 48%, together with a high T(C) of ~358 °C, demonstrating that this material system is a promising candidate for high-temperature piezoelectric applications.
对于铌酸钾钠,通常通过牺牲居里温度 (TC) 来提高压电常数 (d33)。在这项工作中,设计并制备了一个 0.992(K0.46Na0.54)0.965Li0.035Nb(1-x)Sb(x)O3-0.008BiScO3 的材料体系,旨在同时实现大的 d33 和高的 TC。发现化学组成在陶瓷中均匀分布。发现 Sc 的引入导致晶粒尺寸不同。菱方-四方相共存区位于 0.02<x ≤ 0.06 的组成范围内。就铁电性能而言,陶瓷热稳定。退火时缺陷偶极子构型变化引起的畴壁活性的变化被认为是导致不同温度下 d33 变化的原因。x = 0.025 的陶瓷表现出良好的综合性能,d33 ≈ 325 pC/N 和 k(p) ≈ 48%,同时具有高 TC ~358°C,表明该材料体系是高温压电应用的有前途的候选材料。