Surta T Wesley, Whittle Thomas A, Wright Matthew A, Niu Hongjun, Gamon Jacinthe, Gibson Quinn D, Daniels Luke M, Thomas William J, Zanella Marco, Shepley Philippa M, Li Yang, Goetzee-Barral Anton, Bell Andrew J, Alaria Jonathan, Claridge John B, Rosseinsky Matthew J
Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.
School of Physics and Astronomy, University of Leeds, Leeds LS2 9JT, U.K.
J Am Chem Soc. 2021 Jan 27;143(3):1386-1398. doi: 10.1021/jacs.0c10572. Epub 2021 Jan 14.
The piezoelectric devices widespread in society use noncentrosymmetric Pb-based oxides because of their outstanding functional properties. The highest figures of merit reported are for perovskites based on the parent Pb(MgNb)O (PMN), which is a relaxor: a centrosymmetric material with local symmetry breaking that enables functional properties, which resemble those of a noncentrosymmetric material. We present the Pb-free relaxor (KBi)(MgNb)O (KBMN), where the thermal and (di)electric behavior emerges from the discrete structural roles of the s K and s Bi cations occupying the same A site in the perovskite structure, as revealed by diffraction methods. This opens a distinctive route to Pb-free piezoelectrics based on relaxor parents, which we demonstrate in a solid solution of KBMN with the Pb-free ferroelectric (KBi)TiO, where the structure and function evolve together, revealing a morphotropic phase boundary, as seen in PMN-derived systems. The detailed multiple-length-scale understanding of the functional behavior of KBMN suggests that precise chemical manipulation of the more diverse local displacements in the Pb-free relaxor will enhance performance.
社会上广泛使用的压电器件因其出色的功能特性而采用非中心对称的铅基氧化物。报道的最高品质因数是基于母体Pb(MgNb)O(PMN)的钙钛矿,PMN是一种弛豫铁电体:一种具有局部对称性破缺的中心对称材料,其功能特性类似于非中心对称材料。我们展示了无铅弛豫铁电体(KBi)(MgNb)O(KBMN),通过衍射方法揭示,其热行为和(介)电行为源于在钙钛矿结构中占据相同A位的K和Bi阳离子的离散结构作用。这为基于弛豫铁电母体的无铅压电材料开辟了一条独特途径,我们在KBMN与无铅铁电体(KBi)TiO的固溶体中证明了这一点,其中结构和功能共同演变,揭示了一个准同型相界,这在源自PMN的体系中也有出现。对KBMN功能行为的详细多尺度理解表明,对无铅弛豫铁电体中更多样化的局部位移进行精确的化学调控将提高其性能。