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用于摩擦电自供电多功能传感的斑马纹可拉伸螺旋纱线

Zebra-Patterned Stretchable Helical Yarn for Triboelectric Self-Powered Multifunctional Sensing.

作者信息

Gao Yuan, Li Hu, Chao Shengyu, Wang Yaqiong, Hou Lanlan, Bai Tonghua, Bai Jie, Man Xingkun, Cui Zhimin, Wang Nü, Li Zhou, Zhao Yong

机构信息

School of Machinery and Automation, Weifang University, Weifang 261061, P. R. China.

Key Laboratory of Bioinspired Smart Interfacial Science and Technology of Ministry of Education School of Chemistry, Beihang University, Beijing 100191, P. R. China.

出版信息

ACS Nano. 2024 Jul 2;18(26):16958-16966. doi: 10.1021/acsnano.4c03115. Epub 2024 Jun 22.

Abstract

Smart textiles capable of both energy harvesting and multifunctional sensing are highly desirable for next-generation portable electronics. However, there are still challenges that need to be conquered, such as the innovation of an energy-harvesting model and the optimization of interface bonding between fibers and active materials. Herein, inspired by the spiral structure of natural vines, a highly stretchable triboelectric helical yarn (TEHY) was manufactured by twisting the carbon nanotube/polyurethane nanofiber (CNT/PU NF) Janus membrane. The TEHY had a zebra-stripe-like design that was composed of black interval conductive CNTs and white insulative PU NFs. Due to the different electron affinity, the zebra-patterned TEHY realized a self-frictional triboelectric effect because the numerous microscopic CNT/PU triboelectric interfaces generated an alternating current in the external conductive circuit without extra external friction layers. The helical geometry combined with the elastic PU matrix endowed TEHY with superelastic stretchability and outstanding output stability after 1000 cycles of the stretch-release test. By virtue of the robust mechanical and electrical stability, the TEHY can not only be used as a high-entropy mechanical energy harvester but also serve as a self-powered sensor to monitor the stretching or deforming stimuli and human physiological activities in real time. These merits manifested the versatile applications of TEHY in smart fabrics, wearable power supplies, and human-machine interactions.

摘要

能够同时进行能量收集和多功能传感的智能纺织品对于下一代便携式电子产品来说是非常理想的。然而,仍然存在一些需要克服的挑战,比如能量收集模型的创新以及纤维与活性材料之间界面结合的优化。在此,受天然藤蔓螺旋结构的启发,通过将碳纳米管/聚氨酯纳米纤维(CNT/PU NF)双面膜捻合制造出了一种高拉伸性的摩擦电螺旋纱(TEHY)。TEHY具有类似斑马条纹的设计,由黑色间隔导电的CNT和白色绝缘的PU NF组成。由于不同的电子亲和力,这种斑马图案的TEHY实现了自摩擦摩擦电效应,因为众多微观的CNT/PU摩擦电界面在外部导电电路中产生了交流电,而无需额外的外部摩擦层。螺旋几何结构与弹性PU基体相结合,赋予TEHY超弹性拉伸性以及在1000次拉伸 - 释放测试后出色的输出稳定性。凭借强大的机械和电气稳定性,TEHY不仅可以用作高熵机械能收集器,还可以作为自供电传感器实时监测拉伸或变形刺激以及人体生理活动。这些优点体现了TEHY在智能织物、可穿戴电源和人机交互方面的广泛应用。

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