Microstructural characterization of BaTiO3 ceramic nanoparticles synthesized by the hydrothermal technique

被引:14
作者
Zhu, XH
Zhu, JM
Zhou, SH
Liu, ZG
Ben Ming, N
Hesse, D
机构
[1] Nanjing Univ, Dept Phys, Natl Lab Solid State Microstruct, Nanjing 210093, Peoples R China
[2] Max Planck Inst Mikrostrukturphys, D-06120 Halle An Der Saale, Germany
来源
FROM NANOPOWDERS TO FUNCTIONAL MATERIALS | 2005年 / 106卷
关键词
BaTiO3; nanoparticles; microstructures; hydrothermal technique; TEM; HRTEM; BARIUM-TITANATE;
D O I
10.4028/www.scientific.net/SSP.106.41
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
BaTiO3 (BT) nanoparticles were prepared by the hydrothermal technique using different starting materials and the microstructure examined by XRD, SEM, TEM and HRTEM. X-ray diffraction and electron diffraction patterns showed that the nanoparticles were the cubic BaTiO3 phase. The BT nanoparticles prepared from the starting materials of as-prepared titanium hydroxide and barium hydroxide have spherical grain morphology, an average size of 65 nm and a fairly narrow size distribution. A uniform diffraction contrast across each single grain is observed in the TEM images, and the clear lattice fringes (with d(110) = 0.28 nm) observed in HRTEM images reveal that well-crystallized BT nanoparticles are synthesized by the hydrothermal method. The edges of the particles are very smooth, with no surface steps. BT nanoparticles with average grain size of 90 nm, synthesized using barium hydroxide and titanium dioxide as the starting materials, show surface facets. In this case a bimodal size distribution of large faceted and smaller particles is observed. Diffraction contrast variation across the particles caused by high strains within the particles is clearly observed. The high strains obviously stem from structural defects formed during hydrothermal synthesis, presumable in the form of lattice OH- ions and their compensation by cation vacancies. HRTEM images demonstrate that surface facets parallel to the (100) and (110) planes and small islands with 3 similar to 4 atomic layer thickness are frequently observed around the edge of the particles.
引用
收藏
页码:41 / 46
页数:6
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