Latest Advances in Self‐Powered Tactile Sensors Based on Triboelectric Effect: Materials, Structures, and Applications

摩擦电效应 可穿戴技术 可穿戴计算机 能量收集 计算机科学 系统工程 纳米发生器 数码产品 过程(计算) 高效能源利用 工程类 钥匙(锁) 动力传输 新兴技术 可再生能源 能量转换 结构健康监测 智能材料 机械能 智能系统 物联网 机制(生物学) 纳米技术 传输(电信) 建筑工程 无线
作者
Muyuan Li,Chao Xu,Shaoqi Zhu,Jiachen Ye,Xue Li
出处
期刊:Small methods [Wiley]
卷期号:9 (11): e01552-e01552 被引量:2
标识
DOI:10.1002/smtd.202501552
摘要

With the rapid development of flexible electronics and IoT technology, self-powered sensing has emerged as a research hotspot in wearable devices and intelligent human-machine interaction due to its ability to operate without an external power supply, offering significant value for sustainable energy applications. Among these technologies, triboelectric nanogenerator (TENG)-based (SPTS) exhibit great potential in real-time health monitoring, soft robotics, and smart interactive interfaces, owing to their efficient mechanical energy harvesting, high sensitivity, and structural diversity. Recent breakthroughs in functional materials and microstructure design have further enhanced the overall performance of SPTS. This review systematically summarizes key advances and challenges in material selection, structural design, and applications of SPTS. It begins by explaining the working mechanism and energy conversion process of TENG, discusses strategies for new material development and output enhancement, as well as methods to improve sensitivity, stability, and environmental adaptability. Furthermore, it analyzes structure-performance relationships in terms of micro/nano-structuring, flexible/stretchable design, and system-level integration. Emphasis is placed on innovative applications in medical health monitoring and smart industrial manufacturing. Finally, technical challenges related to material optimization, structural fabrication, and signal transmission are addressed, along with potential solutions and future research directions.
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