材料科学
粒度
钛酸钡
铁电性
压电
电介质
烧结
介电常数
陶瓷
压电系数
微晶
放电等离子烧结
复合材料
粒径
铁电陶瓷
极化(电化学)
冶金
光电子学
化学工程
物理化学
化学
工程类
作者
Yongqiang Tan,Jialiang Zhang,Yanqing Wu,Chunlei Wang,Vladimír Kovaľ,Baogui Shi,Haitao Ye,Ruth McKinnon,Giuseppe Viola,Haixue Yan
摘要
Abstract Grain size effects on the physical properties of polycrystalline ferroelectrics have been extensively studied for decades; however there are still major controversies regarding the dependence of the piezoelectric and ferroelectric properties on the grain size. Dense BaTiO 3 ceramics with different grain sizes were fabricated by either conventional sintering or spark plasma sintering using micro- and nano-sized powders. The results show that the grain size effect on the dielectric permittivity is nearly independent of the sintering method and starting powder used. A peak in the permittivity is observed in all the ceramics with a grain size near 1 μm and can be attributed to a maximum domain wall density and mobility. The piezoelectric coefficient d 33 and remnant polarization P r show diverse grain size effects depending on the particle size of the starting powder and sintering temperature. This suggests that besides domain wall density, other factors such as back fields and point defects, which influence the domain wall mobility, could be responsible for the different grain size dependence observed in the dielectric and piezoelectric/ferroelectric properties. In cases where point defects are not the dominant contributor, the piezoelectric constant d 33 and the remnant polarization P r increase with increasing grain size.
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