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迈向可持续智能传感器的途径:基于铁电聚偏二氟乙烯的材料及其在柔性电子学中的集成。

Route towards sustainable smart sensors: ferroelectric polyvinylidene fluoride-based materials and their integration in flexible electronics.

机构信息

Joanneum Research Forschungsgesellschaft mbH, Franz-Pichler Str. Nr. 30, 8160 Weiz, Austria.

出版信息

Chem Soc Rev. 2019 Mar 18;48(6):1787-1825. doi: 10.1039/c8cs00928g. Epub 2019 Feb 18.

Abstract

With the advent of the Internet of Everything (IoE) era, our civilization and future generations will employ an unimaginable complex array of electronics and sensors in daily life. Ferroelectric polymers represent a core group of materials supporting the fast development of IoE, and their functionality, straightforward processing and unmatched versatility make them prime candidates for integration in multifaceted devices. Since they are highly selective, highly responsive, highly scalable, self-powering and compatible with flexible and stretchable substrates, they can be easily integrated with various electronics into numerous stand-alone objects and even into skin as sensors for monitoring diverse mechanical, thermal and vital parameters. They can also be used in combination with other sensor materials for harvesting waste energy from mechanical and thermal sources, for data storage and for actuation. This article reviews the up-to-date accomplishments in the ferroelectric polymer field, with focus on materials involving polyvinylidene fluoride (PVDF), and also discussed both their current advancement and future growth in the development of sustainable systems.

摘要

随着万物互联(IoE)时代的到来,我们的文明和后代将在日常生活中使用难以想象的复杂电子和传感器阵列。铁电聚合物是支持 IoE 快速发展的核心材料组之一,其功能、简单的处理和无与伦比的多功能性使它们成为集成多功能设备的首选候选材料。由于它们具有高度选择性、高度响应性、高度可扩展性、自供电以及与柔性和可拉伸衬底兼容的特点,它们可以与各种电子设备轻松集成,形成众多独立的物体,甚至集成到皮肤中作为传感器,以监测各种机械、热和生命参数。它们还可以与其他传感器材料结合使用,从机械和热源中收集废能,用于数据存储和驱动。本文综述了铁电聚合物领域的最新研究成果,重点介绍了聚偏氟乙烯(PVDF)相关的材料,还讨论了它们在可持续系统发展中的当前进展和未来增长。

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