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Ultrahigh piezoelectricity in lead-free piezoceramics by synergistic design

Authors :
Wang, Dawei
Fan, Zhongming
Rao, Guanghui
Wang, Ge
Liu, Yao
Yuan, Changlai
Ma, Tao
Li, Dejun
Tan, Xiaoli
Lu, Zhilun
Feteira, Antonio
Liu, Shiyu
Zhou, Changrong
Zhang, Shujun
Wang, Dawei
Fan, Zhongming
Rao, Guanghui
Wang, Ge
Liu, Yao
Yuan, Changlai
Ma, Tao
Li, Dejun
Tan, Xiaoli
Lu, Zhilun
Feteira, Antonio
Liu, Shiyu
Zhou, Changrong
Zhang, Shujun
Source :
Australian Institute for Innovative Materials - Papers
Publication Year :
2020

Abstract

© 2020 Following increased environmental concerns on the toxicity of lead, the discovery of ultrahigh piezoelectricity in lead-free piezoelectric materials is critical for the substitution of commercial lead zirconate titanate (PZT) ceramics in numerous electronic devices. In this work, a synergistic design strategy is proposed to enhance the piezoelectricity in lead-free piezoelectric materials by flattening the Gibbs free energy density profile, via the coexistence of multiple phases and local structural heterogeneity. This strategic material design approach is based on first-principles calculations combined with Landau phenomenological theory and phase field simulations. Sustainable Stannum-doped BaTiO3 lead-free ferroelectric ceramics are prepared to validate our proposed mechanism, and a giant piezoelectric coefficient d33 > 1100 pC/N is achieved, being the highest value reported in lead-free piezoceramics. The mechanism and paradigm of the excellent piezoelectricity achieved here provides a feasible solution for replacing lead-based piezoelectrics by lead-free counterparts.

Details

Database :
OAIster
Journal :
Australian Institute for Innovative Materials - Papers
Publication Type :
Electronic Resource
Accession number :
edsoai.on1298580144
Document Type :
Electronic Resource