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铁电驻极体制造、性能优化及应用的最新进展

Recent Advances in Ferroelectret Fabrication, Performance Optimization, and Applications.

作者信息

Wang Ningzhen, Zhang He, Qiu Xunlin, Gerhard Reimund, van Turnhout Jan, Cressotti Jason, Zhao Dong, Tang Liang, Cao Yang

机构信息

School of Technology, Beijing Forestry University, Beijing, 100083, China.

Shanghai Key Laboratory of Intelligent Sensing and Detection Technology, School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai, 200237, China.

出版信息

Adv Mater. 2024 Dec;36(52):e2400657. doi: 10.1002/adma.202400657. Epub 2024 May 28.

Abstract

The growing demand for wearable devices has sparked a significant interest in ferroelectret films. They possess flexibility and exceptional piezoelectric properties due to strong macroscopic dipoles formed by charges trapped at the interface of their internal cavities. This review of ferroelectrets focuses on the latest progress in fabrication techniques for high temperature resistant ferroelectrets with regular and engineered cavities, strategies for optimizing their piezoelectric performance, and novel applications. The charging mechanisms of bipolar and unipolar ferroelectrets with closed and open-cavity structures are explained first. Next, the preparation and piezoelectric behavior of ferroelectret films with closed, open, and regular cavity structures using various materials are discussed. Three widely used models for predicting the piezoelectric coefficients (d) are outlined. Methods for enhancing the piezoelectric performance such as optimized cavity design, utilization of fabric electrodes, injection of additional ions, application of DC bias voltage, and synergy of foam structure and ferroelectric effect are illustrated. A variety of applications of ferroelectret films in acoustic devices, wearable monitors, pressure sensors, and energy harvesters are presented. Finally, the future development trends of ferroelectrets toward fabrication and performance optimization are summarized along with its potential for integration with intelligent systems and large-scale preparation.

摘要

对可穿戴设备日益增长的需求引发了对铁电驻极体薄膜的极大兴趣。由于在其内部腔体界面处捕获的电荷形成了强大的宏观偶极子,它们具有柔韧性和出色的压电性能。这篇关于铁电驻极体的综述重点关注具有规则和工程化腔体的耐高温铁电驻极体制造技术的最新进展、优化其压电性能的策略以及新颖应用。首先解释了具有闭腔和开腔结构的双极和单极铁电驻极体的充电机制。接下来,讨论了使用各种材料制备具有闭腔、开腔和规则腔结构的铁电驻极体薄膜及其压电行为。概述了三种广泛用于预测压电系数(d)的模型。说明了通过优化腔体设计、使用织物电极、注入额外离子、施加直流偏置电压以及泡沫结构与铁电效应协同作用等提高压电性能的方法。介绍了铁电驻极体薄膜在声学器件、可穿戴监测器、压力传感器和能量收集器中的各种应用。最后,总结了铁电驻极体在制造和性能优化方面的未来发展趋势以及其与智能系统集成和大规模制备的潜力。

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