Department of Chemical Engineering and Division of Advanced Nuclear Engineering, Pohang University of Science and Technology (POSTECH), San 31, Hyoja-dong, Nam-gu, Pohang, Kyungbuk, 790-784, Korea.
Nanotechnology. 2012 Apr 6;23(13):135602. doi: 10.1088/0957-4484/23/13/135602. Epub 2012 Mar 14.
Vertically aligned nanowires and highly uniform nanoporous array thin films of PbTiO(3) are synthesized by varying anodic oxidation conditions of Ti foil followed by hydrothermal reaction in an aqueous Pb(II) acetate trihydrate solution. As-synthesized samples have single crystalline nanowire structure and polycrystalline nanoporous structure, although both are pure PbTiO(3) with a tetragonal phase. The structure of intermediate TiO(2) films obtained from different anodic oxidation conditions determines the structure of the product PbTiO(3). The relationships between these morphological structures and ferroelectric properties are investigated. Piezoresponse force microscopy reveals that both these films show ferroelectricity with clear phase contrast and well-defined hysteresis loops. The saturated longitudinal piezoelectric coefficient field (E(c)) of the nanowire sample is smaller than that of nanoporous thin film. Thus, polarization of nanowire thin film is larger in magnitude and easier to flip than that of nanoporous film.
通过改变钛箔的阳极氧化条件,然后在三水合乙酸铅的水溶液中进行水热反应,合成了垂直排列的纳米线和高度均匀的钛酸铅纳米孔阵列薄膜。合成的样品具有单晶纳米线结构和多晶纳米孔结构,尽管它们都是具有四方相的纯钛酸铅。不同阳极氧化条件下获得的中间 TiO2 薄膜的结构决定了产物 PbTiO3 的结构。研究了这些形态结构与铁电性能之间的关系。压电力显微镜揭示了这两种薄膜都表现出铁电性,具有明显的相对比度和清晰的滞后回线。纳米线样品的饱和纵向压电系数场 (E(c)) 小于纳米多孔薄膜的饱和纵向压电系数场。因此,纳米线薄膜的极化强度更大,比多孔薄膜更容易翻转。