Crystallographic texture and phase structure induced excellent piezoelectric performance in KNN‐based ceramics

Author:

Gao Shuo1,Li Peng1ORCID,Qu Jiawei1,Li Wei1,Zhai Jiwei2ORCID,Wang Feifei3ORCID,Hao Jigong1,Fu Peng1,Pan Zhongbin4,Bai Wangfeng5

Affiliation:

1. School of Materials Science and Engineering Liaocheng University Liaocheng China

2. School of Materials Science and Engineering Tongji University Shanghai China

3. Key Laboratory of Optoelectronic Material and Device, Department of Physics Shanghai Normal University Shanghai China

4. School of Materials Science and Chemical Engineering Ningbo University Ningbo China

5. College of Materials and Environmental Engineering Hangzhou Dianzi University Hangzhou China

Abstract

AbstractIt is difficult to maintain strong piezoelectric properties over a wide temperature range in (K,Na)NbO3 (KNN)‐based ceramics owing to the polymorphic phase boundary (PPB). Here, we propose advantageously utilizing the synergistic effect of crystal orientation and phase structure to address this issue. The 〈0 0 1〉pc textured (1 − x)(K0.48Na0.52)(Nb0.96Sb0.04)O3x(Bi0.5Ag0.5)ZrO3 (KNNS–xBAZ) ceramics with different phase structures were synthesized via the templated grain growth method. A high piezoelectric coefficient (d33) of 505 ± 25 pC/N, an electric field‐induced strain of 0.21%, and a superior temperature stability (d33 exhibited a high retention of ≥78% at the temperature up to 200°C; strain maintained within 5.7% change over a temperature range of 30–150°C) were simultaneously achieved in textured KNNS–0.03BAZ ceramics. The flattened Gibbs free energy induced by the R–O–T multiphase coexistence, the strong anisotropy of crystals, and the abundant nanodomains contributed to the enhanced piezoelectric properties. The contribution of the strong anisotropy of crystals in 〈0 0 1〉pc textured ceramics compensates for the deterioration of the piezoelectric properties caused by the phase structure deviation from the PPB with increasing temperature, which benefits the superior temperature stability of the textured KNNS–0.03BAZ ceramics. The previous merits prove that utilizing the synergistic effect of crystal orientation and phase structure is an effective strategy to boost the piezoelectricity and their temperature stability of KNN‐based ceramics.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Materials Chemistry,Ceramics and Composites

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