Levin I, Krayzman V, Cibin G, Tucker M G, Eremenko M, Chapman K, Paul R L
National Institute of Standards and Technology, Gaithersburg, MD, 20899, USA.
Diamond Light Source, Didcot, OX11 0DE, UK.
Sci Rep. 2017 Nov 15;7(1):15620. doi: 10.1038/s41598-017-15937-x.
Perovskite potassium sodium niobates, KNaNbO, are promising lead-free piezoelectrics. Their dielectric and piezoelectric characteristics peak near x = 0.5, but the reasons for such property enhancement remain unclear. We addressed this uncertainty by analyzing changes in the local and average structures across the x = 0.5 composition, which have been determined using simultaneous Reverse Monte Carlo fitting of neutron and X-ray total-scattering data, potassium EXAFS, and diffuse-scattering patterns in electron diffraction. Within the A-sites, Na cations are found to be strongly off-centered along the polar axis as a result of oversized cube-octahedral cages determined by the larger K ions. These Na displacements promote off-centering of the neighboring Nb ions, so that the Curie temperature and spontaneous polarization remain largely unchanged with increasing x, despite the shrinking octahedral volumes. The enhancement of the properties near x = 0.5 is attributed to an abrupt increase in the magnitude and probability of the short-range ordered octahedral rotations, which resembles the pre-transition behavior. These rotations reduce the bond tension around Na and effectively soften the short Na-O bond along the polar axis - an effect that is proposed to facilitate reorientation of the polarization as external electric field is applied.
钙钛矿型铌酸钾钠(KNaNbO₃)是很有前景的无铅压电材料。它们的介电和压电特性在x = 0.5附近达到峰值,但这种性能增强的原因仍不清楚。我们通过分析x = 0.5成分处局部和平均结构的变化来解决这一不确定性,这些结构是通过对中子和X射线全散射数据、钾的扩展X射线吸收精细结构(EXAFS)以及电子衍射中的漫散射图案进行同步反向蒙特卡罗拟合确定的。在A位中,由于较大的K离子确定的超大型立方八面体笼,发现Na阳离子沿极轴强烈偏离中心。这些Na的位移促进了相邻Nb离子的偏离中心,因此尽管八面体体积缩小,但随着x的增加,居里温度和自发极化基本保持不变。x = 0.5附近性能的增强归因于短程有序八面体旋转的幅度和概率突然增加,这类似于转变前的行为。这些旋转降低了Na周围的键张力,并有效地软化了沿极轴的短Na-O键——这一效应被认为有助于在施加外部电场时极化的重新取向。