Stress-modulated optimization of polymorphic phase transition in Li-doped (K,Na)NbO3

被引:14
|
作者
Khansur, Neamul H. [1 ]
Martin, Alexander [1 ,2 ]
Riess, Kevin [1 ]
Nishiyama, Hiroshi [1 ,3 ]
Hatano, Keiichi [4 ]
Wang, Ke [5 ]
Li, Jing-Feng [5 ]
Kakimoto, Ken-ichi [2 ,3 ]
Webber, Kyle G. [1 ]
机构
[1] Friedrich Alexander Univ Erlangen Nurnberg FAU, Dept Mat Sci & Engn, Martensstr 5, D-91508 Erlangen, Germany
[2] Nagoya Inst Technol, Frontier Res Inst Mat Sci, Nagoya, Aichi 4668555, Japan
[3] Nagoya Inst Technol, Grad Sch Engn, Dept Life Sci & Appl Chem, Nagoya, Aichi 4668555, Japan
[4] TAIYO YUDEN CO LTD, Mat R&D Dept, R&D Lab, Takasaki, Gunma 3703347, Japan
[5] Tsinghua Univ, Sch Mat Sci & Engn, State Key Lab New Ceram & Fine Proc, Beijing 100084, Peoples R China
基金
中国国家自然科学基金;
关键词
LEAD-ZIRCONATE-TITANATE; X-RAY; PIEZOELECTRIC CERAMICS; DIFFRACTION; PZT; MICROMECHANICS; PERMITTIVITY; COMPRESSION; BEHAVIOR; TEXTURE;
D O I
10.1063/5.0016072
中图分类号
O59 [应用物理学];
学科分类号
摘要
The effect of uniaxial compressive stress on the crystal structure of a 6mol. % Li-doped (K,Na)NbO3 (LKNN6a) ceramic was investigated using in situ synchrotron X-ray diffraction, revealing the stress-induced relative change in monoclinic Pm and tetragonal P4mm phases. As such, stress-induced phase transformations, in addition to the lattice deformation and domain switching, are the contributing factors for the observed macroscopic mechanical behavior of LKNN6a. The in situ stress-dependent diffraction data also demonstrates a method to mechanically modulate the polymorphic phase transition temperature (T-PPT) to a higher temperature, as observed by the temperature-dependent permittivity measurements under a constant bias stress. The external uniaxial compressive stress increases the stability of the lower symmetry monoclinic phase, shifting T-PPT to a higher temperature by 60 degrees C for the maximum uniaxial compressive stress of 300MPa in the studied composition. Importantly, the stress-induced stabilization of the room-temperature ferroelectric phase can be useful to optimize the phase transition region, as well as increase the temperature stability of lead-free KNN.
引用
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页数:6
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