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基于聚酯导电布的柔性摩擦纳米发电机用于生物机械能收集和自供电传感器。

Flexible triboelectric nanogenerator based on polyester conductive cloth for biomechanical energy harvesting and self-powered sensors.

机构信息

Henan Key Laboratory of Special Protective Materials, Henan Province International Joint Laboratory of Materials for Solar Energy Conversion and Lithium Sodium based Battery, Materials Science and Engineering School, Luoyang Institute of Science and Technology, Luoyang, 471023, P. R. China.

Henan Key Laboratory of Photovoltaic Materials, Henan University, Kaifeng 475004, P. R. China.

出版信息

Nanoscale. 2021 Nov 11;13(43):18363-18373. doi: 10.1039/d1nr05129f.

Abstract

As a new nanotechnology of mechanical energy harvesting and self-powered sensing, triboelectric nanogenerators (TENGs) have been explored as a new path of using various low-frequency disordered mechanical energies in the surrounding environment to provide power and/or sensing. However, the research of TENGs that provide full flexibility and environmental friendliness is still limited. Herein, a flexible single-electrode TENG (S-TENG) based on polyester conductive cloth as the working electrode is developed to harvest human motion energy for powering light emitting diodes (LEDs) and portable electronics. The flat conductive cloth was wrapped in a flexible elastomer. Defatted cowhide was firstly selected as a friction positive charge material for TENGs. When the size of the fabricated S-TENG is 40 × 100 mm, high output performance has been achieved and it can generate an open-circuit voltage of 534 V and a power density of 230 mW m at an operation frequency of 3.0 Hz. After integrating with a rectifier, the S-TENG can power 240 LEDs, charge various capacitors, and drive an electronic watch or a calculator. Moreover, the S-TENG can harvest the biomechanical energy of wrist movement, hand tapping, and human walking. Meanwhile, the S-TENG as a self-powered sensor can be employed to monitor subtle signals of human physiological activities, such as finger motion, facial masseter activity, and diaphragmatic breathing. Additionally, the S-TENG can be attached to clothes (such as wool coats, polyamide sweaters) to harvest the energy of cuff movement. Therefore, this work provides new insights for clean power sources of skin-mounted electronics and promotes the development of a sustainable energy supply for wearable and portable electronics.

摘要

作为机械能收集和自供电传感的新技术,摩擦纳米发电机(TENG)已被探索作为利用周围环境中各种低频无序机械能提供动力和/或传感的新途径。然而,提供完全灵活性和环境友好性的 TENG 研究仍然有限。在此,开发了一种基于聚酯导电布作为工作电极的柔性单电极 TENG(S-TENG),用于收集人体运动能量为发光二极管(LED)和便携式电子设备供电。将扁平导电布包裹在柔性弹性体中。脱脂牛皮首先被选为 TENG 的摩擦正电荷材料。当所制造的 S-TENG 的尺寸为 40×100mm 时,已经实现了高输出性能,它可以在 3.0Hz 的工作频率下产生 534V 的开路电压和 230mW m 的功率密度。与整流器集成后,S-TENG 可以为 240 个 LED 供电、为各种电容器充电、驱动电子表或计算器。此外,S-TENG 可以收集手腕运动、手部敲击和人类行走的生物力学能量。同时,S-TENG 作为自供电传感器可用于监测人体生理活动的细微信号,如手指运动、面部咀嚼肌活动和膈肌呼吸。此外,S-TENG 可以附着在衣服上(如羊毛大衣、聚酰胺毛衣)以收集袖口运动的能量。因此,这项工作为皮肤贴装电子设备的清洁电源提供了新的见解,并促进了可穿戴和便携式电子产品可持续能源供应的发展。

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