用于能量收集和自供电传感应用的铁电纳米材料

Xiang Yu, Yun Ji, Kewei Zhang, Xinyi Shen, Shijian Zhang, Mofei Xu, Xiaoyun Le
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引用次数: 0

摘要

物联网的快速发展对小型化、高度集成化的能量采集器和传感器提出了新的挑战,推动了各种新型纳米材料的探索。铁电纳米材料具有较大的剩余极化、优异的介电性能、优异的化学稳定性和不同的发电能力,在许多领域都是有前途的候选材料。铁电纳米材料具有多种发电机制,包括压电、热释电、光伏和摩擦电效应,展示了它们同时收集和感知多种能量的能力,包括光能、热能和机械能。这种能力有助于电子设备的小型化和高集成化。本文综述了铁电纳米材料的最新研究进展及其在能量收集和自供电传感方面的应用。介绍了不同种类的铁电纳米材料及其铁电性能和制备方法。介绍了铁电能量采集器和自供电传感器的工作原理和性能。并对未来的发展前景进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ferroelectric Nanomaterials for Energy Harvesting and Self-Powered Sensing Applications

Ferroelectric Nanomaterials for Energy Harvesting and Self-Powered Sensing Applications

The rapid development of the Internet of Things has introduced new challenges for miniaturized, highly integrated energy harvesters and sensors, promoting the exploration of various novel nanomaterials. Ferroelectric nanomaterials, characterized by large remanent polarization, exceptional dielectric properties, outstanding chemical stability, and diverse electricity generation capabilities, are emerging as promising candidates in a variety of fields. Possessing various mechanisms for electricity generation, including piezoelectric, pyroelectric, photovoltaic, and triboelectric effects, ferroelectric nanomaterials demonstrate their capability for harvesting and sensing multiple energies simultaneously, including light, thermal, and mechanical energies. This capability contributes to the miniaturization and high integration of electronic devices. This article reviews recent achievements in ferroelectric nanomaterials and their applications in energy harvesting and self-powered sensing. Different categories of ferroelectric nanomaterials, their ferroelectric properties, and fabrication methods are introduced. The working mechanisms and performance of ferroelectric energy harvesters and self-powered sensors are described. Additionally, future prospects are discussed.

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