ACS Appl Mater Interfaces. 2019 Feb 20;11(7):6685-6704. doi: 10.1021/acsami.8b20929. Epub 2019 Feb 8.
High-performance flexible strain and pressure sensors are important components of the systems for human motion detection, human-machine interaction, soft robotics, electronic skin, etc., which are envisioned as the key technologies for applications in future human healthcare monitoring and artificial intelligence. In recent years, highly flexible and wearable strain/pressure sensors have been developed based on various materials/structures and transduction mechanisms. Piezoresistive three-dimensional (3D) monolithic conductive sponge, the resistance of which changes upon external pressure or stimuli, has emerged as a forefront material for flexible and wearable pressure sensor due to its excellent sensor performance, facile fabrication, and simple circuit integration. This review focuses on the rapid development of the piezoresistive pressure sensors based on 3D conductive sponges. Various piezoresistive conductive sponges are categorized into four different types and their material and structural characteristics are summarized. Methods for preparation of the 3D conductive sponges are reviewed, followed by examples of device performance and selected applications. The review concludes with a critical reflection of the current status and challenges. Prospects of the 3D conductive sponge for flexible and wearable pressure sensor are discussed.
高性能的柔韧应变和压力传感器是用于人体运动检测、人机交互、软体机器人、电子皮肤等系统的重要组成部分,被视为未来人类健康监测和人工智能应用的关键技术。近年来,基于各种材料/结构和转换机制,已经开发出了高度柔韧和可穿戴的应变/压力传感器。压阻式三维(3D)整体式导电海绵由于其出色的传感器性能、易于制造和简单的电路集成,在外部压力或刺激下电阻发生变化,已成为柔性和可穿戴压力传感器的前沿材料。本综述重点介绍了基于 3D 导电海绵的压阻式压力传感器的快速发展。各种压阻式导电海绵被分为四种不同类型,并总结了它们的材料和结构特征。还回顾了 3D 导电海绵的制备方法,随后介绍了器件性能和一些应用实例。最后对现状和挑战进行了批判性的反思。还讨论了 3D 导电海绵在柔性和可穿戴压力传感器中的应用前景。