Aabid Abdul, Raheman Md Abdul, Ibrahim Yasser E, Anjum Asraar, Hrairi Meftah, Parveez Bisma, Parveen Nagma, Mohammed Zayan Jalal
Department of Engineering Management, College of Engineering, Prince Sultan University, P.O. BOX 66833, Riyadh 11586, Saudi Arabia.
Department of Electrical and Electronics Engineering, NMAM Institute of Technology, Nitte, Karkala Taluk, Karnataka 574110, India.
Sensors (Basel). 2021 Jun 16;21(12):4145. doi: 10.3390/s21124145.
In the last three decades, smart materials have become popular. The piezoelectric materials have shown key characteristics for engineering applications, such as in sensors and actuators for industrial use. Because of their excellent mechanical-to-electrical and vice versa energy conversion properties, piezoelectric materials with high piezoelectric charge and voltage coefficient have been tested in renewable energy applications. The fundamental component of the energy harvester is the piezoelectric material, which, when subjected to mechanical vibrations or applied stress, induces the displaced ions in the material and results in a net electric charge due to the dipole moment of the unit cell. This phenomenon builds an electric potential across the material. In this review article, a detailed study focused on the piezoelectric energy harvesters (PEH's) is reported. In addition, the fundamental idea about piezoelectric materials, along with their modeling for various applications, are detailed systematically. Then a summary of previous studies based on PEH's other applications is listed, considering the technical aspects and methodologies. A discussion has been provided as a critical review of current challenges in this field. As a result, this review can provide a guideline for the scholars who want to use PEH's for their research.
在过去三十年中,智能材料变得流行起来。压电材料已展现出工程应用的关键特性,例如在工业用传感器和致动器中。由于其优异的机电和反之亦然的能量转换特性,具有高压电电荷和电压系数的压电材料已在可再生能源应用中得到测试。能量收集器的基本组件是压电材料,当受到机械振动或施加应力时,它会使材料中的离子发生位移,并由于晶胞的偶极矩而产生净电荷。这种现象在材料上建立起电势。在这篇综述文章中,报告了一项针对压电能量收集器(PEH)的详细研究。此外,还系统地详细介绍了关于压电材料的基本概念及其在各种应用中的建模。然后列出了基于PEH其他应用的先前研究总结,同时考虑了技术方面和方法。作为对该领域当前挑战的批判性综述,进行了讨论。因此,本综述可为希望在研究中使用PEH的学者提供指导。