四方晶系
极化
电场
凝聚态物理
铁电性
材料科学
压电
X射线晶体学
铁电陶瓷
结晶学
衍射
晶格常数
晶体结构
电介质
化学
光学
物理
复合材料
光电子学
量子力学
作者
Neamul H. Khansur,Rachel Benton,Hinh T. Dinh,Jae‐Shin Lee,Jacob L. Jones,J. Daniels
摘要
Microscopic origins of the electric-field-induced strain for three compositions of Bi1/2(Na1−xKx)1/2TiO3 (x = 0.14, 0.18, and 0.22) (BNKT100x) ceramics have been compared using in situ high-energy (87.12 keV) X-ray diffraction. In the as-processed state, average crystallographic structure of BNKT14 and BNKT18 were found to be of rhombohedral symmetry, while BNKT22 was tetragonal. Diffraction data collected under electric field showed that both the BNKT14 and BNKT18 exhibit induced lattice strain and non-180° ferroelectric domain switching without any apparent phase transformation. The BNKT22 composition, in addition to the lattice strain and domain switching, showed an electric-field-induced transformation from a tetragonal to mixed tetragonal-rhombohedral state. Despite the difference in the origin of microscopic strain responses in these compositions, the measured macroscopic poling strains of 0.46% (BNKT14), 0.43% (BNKT18), and 0.44% (BNKT22) are similar. In addition, the application of a second poling field of opposite polarity to the first increased the magnitude of non-180° ferroelectric domain texture. This was suggested to be related to the existence of an asymmetric internal bias field.
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