摩擦电效应
压电
纳米发生器
材料科学
纳米技术
工程类
电气工程
复合材料
作者
Jianlong Hong,Wei Xiao,Huiyun Zhang,Yukun Xiao,Chongguang Meng,Yuqi Chen,Jiahui Li,Ling Li,Sanghoon Lee,Qiongfeng Shi,Jun Wu
标识
DOI:10.1088/2631-7990/ad878b
摘要
Abstract Benefiting from the widespread potential applications in the era of the Internet of Thing and metaverse, triboelectric and piezoelectric nanogenerators (TENG & PENG) have attracted considerably increasing attention. Their outstanding characteristics, such as self-powered ability, high output performance, integration compatibility, cost-effectiveness, simple configurations, and versatile operation modes, could effectively expand the lifetime of vastly distributed wearable, implantable, and environmental devices, eventually achieving self-sustainable, maintenance-free, and reliable systems. However, current triboelectric/piezoelectric based active (i.e. self-powered) sensors still encounter serious bottlenecks in continuous monitoring and multimodal applications due to their intrinsic limitations of monomodal kinetic response and discontinuous transient output. This work systematically summarizes and evaluates the recent research endeavors to address the above challenges, with detailed discussions on the challenge origins, designing strategies, device performance, and corresponding diverse applications. Finally, conclusions and outlook regarding the research gap in self-powered continuous multimodal monitoring systems are provided, proposing the necessity of future research development in this field.
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