Australia Nuclear Science and Technology Organisation , Lucas Height, New South Wales 2234, Australia.
Electronic Materials Research Laboratory, Xian Jiaotong University , Xian 710049, Shaanxi, China.
ACS Appl Mater Interfaces. 2016 Jun 15;8(23):14313-7. doi: 10.1021/acsami.6b02868. Epub 2016 Jun 2.
This work systematically investigated the structure and property of the near-surface and bulk regions of Pb0.99(Nb0.02Zr0.73Sn0.21Ti0.04)O3 ceramics using a combination of X-ray and neutron diffraction, piezoresponse force microscopy, and conventional ferroelectric/piezoelectric characterization. It is found that mechanical force can induce an antiferroelectric/ferroelectric phase transition within micrometers of the surface. Such a phase transition is strongly dependent on the processing scenario, leading to differences from the bulk region. This work provides crucial insights into the sensitivity of this class of AFE materials. Clearly, surface processing conditions must be taken into account for both accurate structural determination and practical applications.
本工作采用 X 射线和中子衍射、压电力显微镜以及传统铁电/压电特性表征相结合的方法,系统地研究了 Pb0.99(Nb0.02Zr0.73Sn0.21Ti0.04)O3 陶瓷近表面和体相区域的结构和性能。研究发现,机械力可以在微米尺度的表面内诱导反铁电/铁电相转变。这种相转变强烈依赖于处理情况,导致与体相区域的差异。本工作为这类 AFE 材料的灵敏度提供了重要的见解。显然,必须考虑表面处理条件,以进行准确的结构确定和实际应用。