Ferroelectric and Ferroelastic Domain Related Formation and Influential Mechanisms of Vapor Deposited Piezoelectric Thin Films

Author:

Chen Chu,Song Jian,Zhang QiORCID,Gong Mingyu,Liu YueORCID,Fan Tongxiang

Abstract

Compared to the bulk piezoelectric materials counterpart, piezoelectric thin films (PTFs) possess advantages of smaller size, lower power consumption, better sensitivity, and have broad application in advanced micro-electro-mechanical system (MEMS) devices. However, the performance of MEMS transducers and actuators are largely limited by PTFs piezoelectric properties. In this review, we focus on understanding structure-property relationship of vapor deposited PTFs, with emphasis on the effect of strain energy and electrostatic energy in thin films, especially, energy relaxation induced misfit dislocation and ferroelectric (FS) and ferroelastic (FC) domain formation mechanisms. We then discuss the microstructure of these domains and their influential mechanisms on piezoelectric properties, as well as the domain engineering strategies (i.e., internal and external stimuli). This review will motivate further experimental, theoretical, and simulation studies on FS and FC domain engineering in PTFs.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

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1. PZT Sector Slitted Ultrasonic Transducer with 9.4× Baseline Pressure Enhancement;IECON 2023- 49th Annual Conference of the IEEE Industrial Electronics Society;2023-10-16

2. Pseudo‐Ferroelectric Domain‐Wall in Perovskite Ferroelectric Thin Films;Advanced Functional Materials;2023-07-20

3. Sputtered PZT pMUT with Bias-Tunable Electromechanical Coupling Coefficient for Air-coupled Ranging Applications;2022 IEEE International Ultrasonics Symposium (IUS);2022-10-10

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