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高性能可拉伸机电传感器的合理设计与材料研究进展。

Advances in Rational Design and Materials of High-Performance Stretchable Electromechanical Sensors.

机构信息

Queensland Micro- and Nanotechnology Centre, Griffith University, Brisbane, 4111, Queensland, Australia.

School of Mechanical and Electrical Engineering, University of Southern Queensland, Brisbane, 4300, Queensland, Australia.

出版信息

Small. 2020 Apr;16(14):e1905707. doi: 10.1002/smll.201905707. Epub 2020 Feb 26.

Abstract

Stretchable and wearable sensor technology has attracted significant interests and created high technological impact on portable healthcare and smart human-machine interfaces. Wearable electromechanical systems are an important part of this technology that has recently witnessed tremendous progress toward high-performance devices for commercialization. Over the past few years, great attention has been paid to simultaneously enhance the sensitivity and stretchability of the electromechanical sensors toward high sensitivity, ultra-stretchability, low power consumption or self-power functionalities, miniaturisation as well as simplicity in design and fabrication. This work presents state-of-the-art advanced materials and rational designs of electromechanical sensors for wearable applications. Advances in various sensing concepts and structural designs for intrinsic stretchable conductive materials as well as advanced rational platforms are discussed. In addition, the practical applications and challenges in the development of stretchable electromechanical sensors are briefly mentioned and highlighted.

摘要

可拉伸和可穿戴传感器技术引起了广泛关注,并对便携式医疗保健和智能人机界面产生了重大技术影响。可穿戴机电系统是这项技术的重要组成部分,近年来,人们致力于朝着高性能商业化设备的方向取得巨大进展。在过去的几年中,人们非常关注同时提高机电传感器的灵敏度和可拉伸性,以实现高灵敏度、超拉伸性、低功耗或自供电功能、小型化以及设计和制造的简单化。本文介绍了用于可穿戴应用的机电传感器的最先进的先进材料和合理设计。讨论了各种传感概念和结构设计的进展,以及用于内在可拉伸导电材料的先进合理平台。此外,还简要提到并强调了可拉伸机电传感器发展中的实际应用和挑战。

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