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Ultra-Flexible and Large-Area Textile-Based Triboelectric Nanogenerators with a Sandpaper-Induced Surface Microstructure

机译:具有砂纸诱导的表面微结构的超柔性大面积纺织摩擦生纳米发电机

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摘要

Wearable triboelectric nanogenerators (TENGs) have attracted interest in recent years, which demand highly flexible, scalable, and low-cost features. Here, we report an ultra-flexible, large-scale and textile-based TENG (T-TENG) for scavenging human motion energy. The triboelectric layer was derived from the polydimethylsiloxane (PDMS) film with a cost-effective paper-induced rough surface via a facile doctor-blending technology. Ag-coated chinlon fabric (ACF) with ultra-flexible, large-scale and conductive characteristics was used as the electrode. The as-fabricated PDMS-based ACF (PACF) composites possess a 240 × 300 mm2 superficial area and remain highly flexible under mechanical squeezing, folding and even tearing deformation. The maximum output charge of ~21 μC and voltage of 80.40 V were therefore achieved to directly power 100 LEDs based on the high surface area of 762.73 mm2 which was rationally replicated from the sandpaper of the T-TENG. Moreover, the output voltage signal can be also used as a trigger signal of a movement sensor. Importantly, the explicit theoretical model corresponding to T-TENG was quantitatively investigated under different applied force, frequency and effective surface factor.
机译:近年来,可穿戴的摩擦电纳米发电机(TENG)引起了人们的兴趣,它们需要高度灵活,可扩展且低成本的功能。在这里,我们报告了一种超柔性,大型且基于纺织品的TENG(T-TENG),用于清除人体运动能量。摩擦电层由聚二甲基硅氧烷(PDMS)膜衍生而来,该膜通过一种便捷的刮刀混合技术,具有成本效益高的纸张诱导的粗糙表面。具有超柔韧性,大规模和导电特性的涂银的chinlon织物(ACF)用作电极。加工后的基于PDMS的ACF(PACF)复合材料具有240×300 mm 2 的表面面积,并且在机械挤压,折叠甚至撕裂变形下仍具有很高的柔韧性。因此,基于762.73 mm 2 的高表面积可以直接为100个LED供电,从而获得约21μC的最大输出电荷和80.40 V的电压,该功率可以从T-TENG的砂纸中合理复制出来。此外,输出电压信号也可以用作运动传感器的触发信号。重要的是,在不同的作用力,频率和有效表面系数下,定量研究了与T-TENG对应的显式理论模型。

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