Mapping domain structures near a grain boundary in a lead zirconate titanate ferroelectric film using X-ray nanodiffraction

材料科学 晶界 锆钛酸铅 铁电性 衍射 四方晶系 凝聚态物理 压电 电介质 结晶学 光学 晶体结构 复合材料 光电子学 物理 微观结构 化学
作者
S. A. Udovenko,Yeongwoo Son,Pannawit Tipsawat,Reilly J. Knox,S. O. Hruszkewycz,Hanfei Yan,Xiaojing Huang,Ajith Pattammattel,Marc Zajac,Wonsuk Cha,Darren C. Pagan,Susan Trolier‐McKinstry
出处
期刊:Journal of Applied Crystallography [Wiley]
卷期号:57 (6): 1789-1799 被引量:6
标识
DOI:10.1107/s1600576724009026
摘要

The effect of an electric field on local domain structure near a 24° tilt grain boundary in a 200 nm-thick Pb(Zr 0.2 Ti 0.8 )O 3 bi-crystal ferroelectric film was probed using synchrotron nanodiffraction. The bi-crystal film was grown epitaxially on SrRuO 3 -coated (001) SrTiO 3 24° tilt bi-crystal substrates. From the nanodiffraction data, real-space maps of the ferroelectric domain structure around the grain boundary prior to and during application of a 200 kV cm −1 electric field were reconstructed. In the vicinity of the tilt grain boundary, the distributions of densities of c -type tetragonal domains with the c axis aligned with the film normal were calculated on the basis of diffracted intensity ratios of c - and a -type domains and reference powder diffraction data. Diffracted intensity was averaged along the grain boundary, and it was shown that the density of c -type tetragonal domains dropped to ∼50% of that of the bulk of the film over a range ±150 nm from the grain boundary. This work complements previous results acquired by band excitation piezoresponse force microscopy, suggesting that reduced nonlinear piezoelectric response around grain boundaries may be related to the change in domain structure, as well as to the possibility of increased pinning of domain wall motion. The implications of the results and analysis in terms of understanding the role of grain boundaries in affecting the nonlinear piezoelectric and dielectric responses of ferroelectric materials are discussed.
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