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用于能量收集和传感器的压电ABC化合物及其纳米复合材料:综述

Piezoelectric ABC Compounds and Their Nanocomposites for Energy Harvesting and Sensors: A Review.

作者信息

Szperlich Piotr

机构信息

Institute of Physics-Centre for Science and Education, Silesian University of Technology, Krasinskiego 8 Street, 40-019 Katowice, Poland.

出版信息

Materials (Basel). 2021 Nov 18;14(22):6973. doi: 10.3390/ma14226973.

Abstract

Interest in pyroelectrics and piezoelectrics has increased worldwide on account of their unique properties. Applications based on these phenomena include piezo- and pyroelectric nanogenerators, piezoelectric sensors, and piezocatalysis. One of the most interesting materials used in this growing field are ABC nanowires, an example of which is SbSI. The latter has an electromechanical coupling coefficient of 0.8, a piezoelectric module of 2000 pC/N, and a pyroelectric coefficient of 12 × 10 C/mK. In this review, we examine the production and properties of these nanowires and their composites, such as PAN/SbSI and PVDF/SbSI. The generated electrical response from 11 different structures under various excitations, such as an impact or a pressure shock, are presented. It is shown, for example, that the PVDF/SbSI and PAN/SbSI composites have well-arranged nanowires, the orientation of which greatly affects the value of its output power. The power density for all the nanogenerators based upon ABC nanowires (and their composites) are recalculated by use of the same key equation. This enables an accurate comparison of the efficiency of all the configurations. The piezo- and photocatalytic properties of SbSI nanowires are also presented; their excellent ability is shown by the high reaction kinetic rate constant (7.6 min).

摘要

由于其独特的性质,全球范围内对热释电材料和压电材料的兴趣与日俱增。基于这些现象的应用包括压电和热释电纳米发电机、压电传感器以及压电催化。在这个不断发展的领域中使用的最有趣的材料之一是ABC纳米线,其中一个例子是SbSI。后者的机电耦合系数为0.8,压电模量为2000 pC/N,热释电系数为12×10 C/mK。在这篇综述中,我们研究了这些纳米线及其复合材料(如PAN/SbSI和PVDF/SbSI)的制备和性质。展示了11种不同结构在各种激励(如冲击或压力冲击)下产生的电响应。例如,结果表明PVDF/SbSI和PAN/SbSI复合材料具有排列良好的纳米线,其取向对其输出功率值有很大影响。使用相同的关键方程重新计算了基于ABC纳米线(及其复合材料)的所有纳米发电机的功率密度。这使得能够准确比较所有配置的效率。还展示了SbSI纳米线的压电和光催化性质;其高反应动力学速率常数(7.6分钟)表明了它们出色的能力。

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