Quantitative domain evaluation in rhombohedral BS-PT piezoelectric ceramics via diffraction-plane-transformation model

Author:

Wu Jingen1ORCID,Wu Chaoyu1,Qiao Jiacheng1ORCID,Xu Yiwei1ORCID,Du Yongjun1ORCID,Wang Zhiguang1ORCID,Bai He2,Cui Wanzhao2ORCID,Hu Zhongqiang1ORCID,Liu Ming1ORCID

Affiliation:

1. State Key Laboratory for Manufacturing Systems Engineering, Electronic Materials Research Laboratory, Key Laboratory of the Ministry of Education, Engineering Research Center of Spin Quantum Sensor Chips, Universities of Shaanxi Province, School of Electronic Science and Engineering, Xi'an Jiaotong University 1 , Xi'an 710049, China

2. China Academy of Space Technology (CAST) 2 , Xi'an, China

Abstract

The domain structure fundamentally determines the piezoelectric/ferroelectric performance of ferroelectric materials. To understand the correlation between macro-properties and microstructure, the evolution of domain structure should be clearly figured out. Here, the diffraction-plane-transformation (DPT) model is proposed for the domain evaluation in BS-PT piezoelectric ceramics of rhombohedral crystalline structure. The transformation between different crystal planes is accurately revealed by the DPT model. Then, non-180° domain reversal in rhombohedral 0.4BiScO3–0.6PbTiO3 piezoelectric ceramics (abbreviated as BS-PT) can be quantitatively estimated, whether in electric poling or thermal depoling processes. Experimentally, the correlations between piezoelectric coefficients, electromechanical coupling properties, and non-180° domain reversal percentage are investigated. It is proven that the DPT model provides an effective method for the non-180° domain estimation in rhombohedral crystalline ceramics.

Funder

National Natural Science Foundation of China

National Key Laboratory Foundation of China

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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