High-Performance Mechano-Sensitive Piezoelectric Nanogenerator from Post-Treated Nylon-11,11 Textiles for Energy Harvesting and Human Motion Monitoring

IF 8.2 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Zhixiao Wang, Yubo Duan, Chongyang Liu, Lihua Wang, Zhaoyang Zhang, Wei Zhao, Xiaomeng Zhang, Yuancheng Zhang, Peng Fu, Hongling Cai, Zhe Cui*, Xinchang Pang, Zhi Li Dong and Minying Liu, 
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Abstract

Piezoelectric polymer textiles offer distinct advantages in the fabrication of wearable nanogenerators (NGs). One effective strategy to enhance the output capacity of NGs is to modulate the piezoelectric performance of the textiles. This paper focuses on further improving the piezoelectric properties of nylon-11,11 textiles through post-drawing and annealing treatments. We elucidate the evolution of morphology and the ferroelectric phase in the submicron/nanoscale fibers during post processing as well as the corresponding changes in performance. The drawing process primarily enhances the orientation of the crystalline phase and reduces the fiber diameter, while the annealing process more effectively promotes the crystal size and crystallinity. Afterward, we propose an optimal postdrawing and annealing assisted-electrostatic spinning process. Under the synergistic effects of these post-treatments, the remanent polarization (Pr) of nylon-11,11 textile increased to 4.7 times that of the untreated textile, resulting in amplified piezoelectric outputs. The output voltage, current, and power density of the prepared PENG reached 21.5 V, 800 nA, and 1.88 mW·m–2 (80 MΩ), respectively. Notably, at pressures exceeding 8 kPa, the mechano-voltage and current sensitivity reached as high as 266 mV/kPa and 13.99 nA/kPa, respectively, which is extraordinary compared to other piezoelectric NGs and comparable to the performance of nylon-based triboelectric NGs. Furthermore, we investigated the potential application of the prepared PENG in biomechanical energy harvesting and human movement monitoring. Experiments demonstrated its effectiveness in powering light bulbs, tracking walking status, and monitoring finger/hand/wrist gestures.

Abstract Image

用于能量收集和人体运动监测的高性能尼龙-11,11织物机械敏感压电纳米发电机
压电聚合物纺织品在制造可穿戴纳米发电机(NGs)方面具有明显的优势。调制纺织品的压电性能是提高纺织品输出能力的一种有效策略。本文的重点是通过后拉伸和退火处理进一步提高尼龙-11,11纺织品的压电性能。我们阐明了亚微米/纳米级纤维在后处理过程中形态和铁电相的演变以及相应的性能变化。拉伸工艺主要增强了晶相的取向,减小了纤维直径,而退火工艺更有效地提高了晶体尺寸和结晶度。在此基础上,提出了一种最佳后拉伸退火辅助静电纺丝工艺。在这些后处理的协同作用下,尼龙-11,11纺织品的剩余极化(Pr)增加到未处理纺织品的4.7倍,导致压电输出放大。制备的PENG的输出电压、电流和功率密度分别达到21.5 V、800 nA和1.88 mW·m-2 (80 MΩ)。值得注意的是,在压力超过8 kPa时,机械电压和电流灵敏度分别高达266 mV/kPa和13.99 nA/kPa,这与其他压电NGs相比是非凡的,与尼龙基摩擦电NGs的性能相当。此外,我们还研究了制备的PENG在生物力学能量收集和人体运动监测方面的潜在应用。实验证明了它在灯泡供电、跟踪行走状态以及监测手指/手/手腕手势方面的有效性。
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来源期刊
ACS Applied Materials & Interfaces
ACS Applied Materials & Interfaces 工程技术-材料科学:综合
CiteScore
16.00
自引率
6.30%
发文量
4978
审稿时长
1.8 months
期刊介绍: ACS Applied Materials & Interfaces is a leading interdisciplinary journal that brings together chemists, engineers, physicists, and biologists to explore the development and utilization of newly-discovered materials and interfacial processes for specific applications. Our journal has experienced remarkable growth since its establishment in 2009, both in terms of the number of articles published and the impact of the research showcased. We are proud to foster a truly global community, with the majority of published articles originating from outside the United States, reflecting the rapid growth of applied research worldwide.
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