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用于能量收集和信号传感的杂交纳米-微摩擦电纱线的连续且可扩展制造

Continuous and Scalable Manufacture of Hybridized Nano-Micro Triboelectric Yarns for Energy Harvesting and Signal Sensing.

作者信息

Ma Liyun, Zhou Mengjuan, Wu Ronghui, Patil Aniruddha, Gong Hao, Zhu Shuihong, Wang Tingting, Zhang Yifan, Shen Shen, Dong Kai, Yang Likun, Wang Jun, Guo Wenxi, Wang Zhong Lin

机构信息

Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Science, Beijing 100083, China.

Key Laboratory of Textile Science & Technology, Ministry of Education, College of Textiles, Donghua University, Shanghai 201620, China.

出版信息

ACS Nano. 2020 Apr 28;14(4):4716-4726. doi: 10.1021/acsnano.0c00524. Epub 2020 Apr 10.

Abstract

Textile-based triboelectric nanogenerators (TENG) that can effectively harvest biomechanical energy and sense multifunctional posture and movement have a wide range of applications in next-generation wearable and portable electronic devices. Hence, bulk production of fine yarns with high triboelectric output through a continuous manufacturing process is an urgent task. Here, an ultralight single-electrode triboelectric yarn (SETY) with helical hybridized nano-micro core-shell fiber bundles is fabricated by a facile and continuous electrospinning technology. The obtained SETY device exhibits ultralightness (0.33 mg cm), extra softness, and smaller size (350.66 μm in diameter) compared to those fabricated by conventional fabrication techniques. Based on such a textile-based TENG, high energy-harvesting performance (40.8 V, 0.705 μA cm, and 9.513 nC cm) was achieved by applying a 2.5 Hz mechanical drive of 5 N. Importantly, the triboelectric yarns can identify textile materials according to their different electron affinity energies. In addition, the triboelectric yarns are compatible with traditional textile technology and can be woven into a high-density plain fabric for harvesting biomechanical energy and are also competent for monitoring tiny signals from humans or insects.

摘要

基于纺织品的摩擦电纳米发电机(TENG)能够有效收集生物机械能并感知多功能姿势和运动,在下一代可穿戴和便携式电子设备中具有广泛应用。因此,通过连续制造工艺批量生产具有高摩擦电输出的细纱是一项紧迫任务。在此,采用简便的连续静电纺丝技术制备了具有螺旋杂交纳米-微核壳纤维束的超轻单电极摩擦电纱(SETY)。与传统制造技术制备的相比,所获得的SETY器件具有超轻特性(0.33 mg/cm)、格外柔软以及更小尺寸(直径350.66 μm)。基于这种基于纺织品的TENG,通过施加5 N的2.5 Hz机械驱动实现了高能量收集性能(40.8 V、0.705 μA/cm和9.513 nC/cm)。重要的是,摩擦电纱可以根据不同纺织材料的电子亲和能来识别它们。此外,摩擦电纱与传统纺织技术兼容,可编织成高密度平纹织物用于收集生物机械能,并且还能够监测来自人类或昆虫的微小信号。

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