Fan Longlong, Chen Jun, Ren Yang, Xing Xianran
College of Physics and Materials Science , Tianjin Normal University , Tianjin 300387 , China.
Department of Physical Chemistry , University of Science and Technology Beijing , Beijing 100083 , China.
Inorg Chem. 2018 Mar 19;57(6):3002-3007. doi: 10.1021/acs.inorgchem.7b02329. Epub 2018 Mar 7.
The evidence of fundamental lattice strain and domain switching contribution to the piezoelectric and ferroelectric responses of ceramics has been well studied, while the contribution from crystal structure variation has been rarely reported in terms of the existence of intergranular stress/strain and crystallographic texture. In the present study, the detailed electric field induced structure evolution in rhombohedral PbZrTiO (PZT55) has been investigated by in-situ high-energy synchrotron diffraction. The phase of PZT55 is stable in the rhombohedral one against bipolar electrical loading. It is interesting to find that both spontaneous polarization and unit cell volume exhibit a butterfly shape in response to electric field. Direct evidence has revealed that the lattice strain and volume expansion show similar variation tendency to the piezoelectric response in the rhombohedral PZT55. The macro-polarization of PZT55 derives from the combination of domain switching and spontaneous polarization change.
关于基本晶格应变和畴切换对陶瓷压电和铁电响应的贡献已有充分研究,而对于晶界应力/应变和晶体织构存在情况下晶体结构变化的贡献则鲜有报道。在本研究中,通过原位高能同步辐射衍射研究了菱面体PbZrTiO(PZT55)中详细的电场诱导结构演变。PZT55的相在菱面体相中对于双极电加载是稳定的。有趣的是,发现自发极化和单胞体积在电场作用下均呈现蝶形。直接证据表明,菱面体PZT55中的晶格应变和体积膨胀与压电响应呈现相似的变化趋势。PZT55的宏观极化源于畴切换和自发极化变化的组合。