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通过模仿自然界中材料和结构的特性构建可穿戴触摸传感器。

Construction of Wearable Touch Sensors by Mimicking the Properties of Materials and Structures in Nature.

作者信息

Geng Baojun, Zeng Henglin, Luo Hua, Wu Xiaodong

机构信息

School of Mechanical Engineering, Sichuan University, Chengdu 610065, China.

出版信息

Biomimetics (Basel). 2023 Aug 17;8(4):372. doi: 10.3390/biomimetics8040372.

Abstract

Wearable touch sensors, which can convert force or pressure signals into quantitative electronic signals, have emerged as essential smart sensing devices and play an important role in various cutting-edge fields, including wearable health monitoring, soft robots, electronic skin, artificial prosthetics, AR/VR, and the Internet of Things. Flexible touch sensors have made significant advancements, while the construction of novel touch sensors by mimicking the unique properties of biological materials and biogenetic structures always remains a hot research topic and significant technological pathway. This review provides a comprehensive summary of the research status of wearable touch sensors constructed by imitating the material and structural characteristics in nature and summarizes the scientific challenges and development tendencies of this aspect. First, the research status for constructing flexible touch sensors based on biomimetic materials is summarized, including hydrogel materials, self-healing materials, and other bio-inspired or biomimetic materials with extraordinary properties. Then, the design and fabrication of flexible touch sensors based on bionic structures for performance enhancement are fully discussed. These bionic structures include special structures in plants, special structures in insects/animals, and special structures in the human body. Moreover, a summary of the current issues and future prospects for developing wearable sensors based on bio-inspired materials and structures is discussed.

摘要

可穿戴触摸传感器能够将力或压力信号转换为定量电子信号,已成为重要的智能传感设备,并在包括可穿戴健康监测、软体机器人、电子皮肤、人工假肢、AR/VR和物联网在内的各种前沿领域发挥着重要作用。柔性触摸传感器已取得显著进展,而通过模仿生物材料和生物遗传结构的独特特性来构建新型触摸传感器一直是热门研究课题和重要技术途径。本文综述了模仿自然界材料和结构特征构建的可穿戴触摸传感器的研究现状,并总结了这方面的科学挑战和发展趋势。首先,总结了基于仿生材料构建柔性触摸传感器的研究现状,包括水凝胶材料、自修复材料以及其他具有非凡特性的生物启发或仿生材料。然后,全面讨论了基于仿生结构以提高性能的柔性触摸传感器的设计与制造。这些仿生结构包括植物中的特殊结构、昆虫/动物中的特殊结构以及人体中的特殊结构。此外,还讨论了基于生物启发材料和结构开发可穿戴传感器的当前问题和未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b722/10452172/315299104281/biomimetics-08-00372-g001.jpg

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