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首页> 外文期刊>Journal of Applied Physics >Microstructure at morphotropic phase boundary in Pb(Mg1/3Nb2/3)O3-PbTiO3 ceramic: Coexistence of nano-scaled {110}-type rhombohedral twin and {110}-type tetragonal twin
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Microstructure at morphotropic phase boundary in Pb(Mg1/3Nb2/3)O3-PbTiO3 ceramic: Coexistence of nano-scaled {110}-type rhombohedral twin and {110}-type tetragonal twin

机译:Pb(Mg1 / 3Nb2 / 3)O3-PbTiO3陶瓷相变相界处的微观结构:纳米级{110}型菱面体孪晶和{110}型四方晶孪晶的共存

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摘要

For more than half a century, the morphotropic phase boundary (MPB) has drawn constant interest in developing piezoelectric materials, as the phase instability at the region significantly enhances piezoelectricity. However, the local structure/symmetry at the MPB region is still under controversy. The investigation on morphology and origin of the local structure at MPB is of considerable importance to provide a microstructure basis for high piezoelectricity. In the present study, we thus use high resolution transmission electron microscopy to investigate the microstructure feature of MPB at PMN-PT ceramics. The local structure is shown to be the coexistence of nano-scaled {110}-type rhombohedral (R) twin and {110}-type tetragonal (T) twin. Such nano-scaled coexistence can be due to a nearly vanishing polarization anisotropy and low domain wall energy at MPB, which thus facilitates polarization rotation between 〈001〉T and 〈111〉R states and leads to high properties of MPB compositions.
机译:半个多世纪以来,由于该区域的相不稳定性显着增强了压电性,因此向晶相边界(MPB)引起了人们对压电材料开发的不断关注。但是,MPB区域的局部结构/对称性仍存在争议。为提供高压电性的微观结构基础,对MPB局部结构的形态和起源进行研究非常重要。因此,在本研究中,我们使用高分辨率透射电子显微镜研究了PMN-PT陶瓷中MPB的微观结构特征。局部结构显示为纳米级{110}型菱形(R)孪晶和{110}型四方(T)孪晶的共存。这种纳米尺度的共存可能是由于极化各向异性几乎消失了,MPB处的畴壁能量低,因此促进了〈001〉T和〈111〉R态之间的极化旋转,并导致了MPB组合物的高性能。

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