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用于控制电化学过程的压电材料

Piezoelectric Materials for Controlling Electro-Chemical Processes.

作者信息

Qian Weiqi, Yang Weiyou, Zhang Yan, Bowen Chris R, Yang Ya

机构信息

CAS Center for Excellence in Nanoscience, Beijing Key Laboratory of Micro-nano Energy and Sensor, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 100083, People's Republic of China.

School of Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing, 100049, People's Republic of China.

出版信息

Nanomicro Lett. 2020 Jul 14;12(1):149. doi: 10.1007/s40820-020-00489-z.

Abstract

Piezoelectric materials have been analyzed for over 100 years, due to their ability to convert mechanical vibrations into electric charge or electric fields into a mechanical strain for sensor, energy harvesting, and actuator applications. A more recent development is the coupling of piezoelectricity and electro-chemistry, termed piezo-electro-chemistry, whereby the piezoelectrically induced electric charge or voltage under a mechanical stress can influence electro-chemical reactions. There is growing interest in such coupled systems, with a corresponding growth in the number of associated publications and patents. This review focuses on recent development of the piezo-electro-chemical coupling multiple systems based on various piezoelectric materials. It provides an overview of the basic characteristics of piezoelectric materials and comparison of operating conditions and their overall electro-chemical performance. The reported piezo-electro-chemical mechanisms are examined in detail. Comparisons are made between the ranges of material morphologies employed, and typical operating conditions are discussed. In addition, potential future directions and applications for the development of piezo-electro-chemical hybrid systems are described. This review provides a comprehensive overview of recent studies on how piezoelectric materials and devices have been applied to control electro-chemical processes, with an aim to inspire and direct future efforts in this emerging research field.

摘要

压电材料因其能够将机械振动转换为电荷,或将电场转换为机械应变,从而应用于传感器、能量收集和执行器等领域,已被研究了100多年。最近的一个发展方向是压电与电化学的耦合,即压电电化学,在这种情况下,机械应力下压电诱导产生的电荷或电压会影响电化学反应。人们对这种耦合系统的兴趣与日俱增,相关的出版物和专利数量也相应增加。本综述重点关注基于各种压电材料的压电电化学耦合多系统的最新进展。它概述了压电材料的基本特性,并比较了其工作条件及其整体电化学性能。详细研究了已报道的压电电化学机理。对所采用的材料形态范围进行了比较,并讨论了典型的工作条件。此外,还描述了压电电化学混合系统未来可能的发展方向和应用。本综述全面概述了最近关于压电材料和器件如何应用于控制电化学过程的研究,旨在启发和指导这一新兴研究领域未来的工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd33/7770897/3b4c24c0d207/40820_2020_489_Fig1_HTML.jpg

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