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首页> 外文期刊>RSC Advances >Wearable triboelectric nanogenerator using a plasma-etched PDMS–CNT composite for a physical activity sensor
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Wearable triboelectric nanogenerator using a plasma-etched PDMS–CNT composite for a physical activity sensor

机译:使用等离子体蚀刻的PDMS-CNT复合材料的可穿戴摩擦电纳米发电机,用于身体活动传感器

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Triboelectric nanogenerators (TENGs) have recently shown promising potential as effective energy harvesters using human motion energy. However, the efficiency of polymer-based flexible TENG must be enhanced for various applications. In this work, we propose a flexible TENG with a fluorocarbon plasma-etched polydimethylsiloxane (PDMS)–carbon nanotube (CNT). The fluorocarbon plasma etching causes not only a chemical modification, but also a physical effect on the morphology of the PDMS–CNT surface to enhance the TENG output performance. The added CNT enhances the mechanical properties, such as durability, of a thin film. The etched PDMS structure and the revealed CNTs increase the charge density on the surface. We confirm the effect of different CNT concentrations doped in PDMS and various etching times. We propose a TENG with 4 wt% CNT, which has been subjected to fluorocarbon etching for 60 s. The TENG exhibits an output voltage of 77.8 V, which is 248.7% and 106.5% higher than that of pure PDMS and un-etched PDMS–CNT, respectively. The 20 mm × 30 mm TENG delivers an output power of 1.98 mW (3.29 W m?2) at a matching resistance of 3 MΩ. The TENG exhibits good stability and superior electrical performance, making it capable of driving both the instantaneous operation of 70 LEDs and the charging of a 0.33 μF capacitor to 6.6 V. Furthermore, this TENG can be used as a self-powered physical activity sensor that measures the amount of human activity through the amount of charge in the capacitor.
机译:摩擦电纳米发电机(TENGs)最近显示出有望成为使用人体运动能量的有效能量收集器的潜力。但是,对于各种应用,必须提高基于聚合物的柔性TENG的效率。在这项工作中,我们提出了一种具有碳氟化合物等离子体刻蚀的聚二甲基硅氧烷(PDMS)-碳纳米管(CNT)的柔性TENG。碳氟化合物等离子体蚀刻不仅会导致化学改性,而且还会对PDMS-CNT表面的形态产生物理影响,从而提高TENG的输出性能。添加的CNT增强了薄膜的机械性能,例如耐久性。蚀刻的PDMS结构和露出的CNT增加了表面上的电荷密度。我们确认了PDMS中掺杂的不同CNT浓度和各种蚀刻时间的影响。我们提出了一种具有4 wt%CNT的TENG,该TENG已经受碳氟化合物蚀刻60 s。 TENG的输出电压为77.8 V,分别比纯PDMS和未蚀刻的PDMS-CNT高248.7%和106.5%。 20 mm×30 mm TENG的匹配电阻为3MΩ,输出功率为1.98 mW(3.29 W m ?2 )。 TENG具有良好的稳定性和出色的电气性能,使其既可以驱动70个LED的瞬时工作,又可以将0.33μF电容器充电至6.6V。此外,该TENG可用作自供电的身体活动传感器,通过电容器中的电荷量来测量人体活动量。

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