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首页> 外文期刊>ACS nano >Robust Triboelectric Nanogenerator Based on Rolling Electrification and Electrostatic Induction at an Instantaneous Energy Conversion Efficiency of similar to 55%
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Robust Triboelectric Nanogenerator Based on Rolling Electrification and Electrostatic Induction at an Instantaneous Energy Conversion Efficiency of similar to 55%

机译:基于滚动带电和静电感应的稳健摩擦式纳米发电机,瞬时能量转换效率接近55%

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In comparison to in-pane sliding friction, rolling friction not only is likely to consume less mechanical energy but also presents high robustness with minimized wearing of materials. In this work, we introduce a highly efficient approach for harvesting mechanical energy based on rolling electrification and electrostatic induction, aiming at improving the energy conversion efficiency and device durability. The rolling triboelectric nanogenerator is composed of multiple steel rods sandwiched by two fluorinated ethylene propylene (FEP) thin films. The rolling motion of the steel rods between the FEP thin films introduces triboelectric charges on both surfaces and leads to the change of potential difference between each pair of electrodes on back of the FEP layer, which drives the electrons to flow in the external load. As power generators, each pair of output terminals works independently and delivers an open-circuit voltage of 425 V, and a short-circuit current density of 5 mA/m(2). The two output terminals can also be integrated to achieve an overall power density of up to 1.6 W/m(2). The impacts of variable structural factors were investigated for optimization of the output performance, and other prototypes based on rolling balls were developed to accommodate different types of mechanical energy sources. Owing to the low frictional coefficient of the rolling motion, an instantaneous energy conversion efficiency of up to 55% was demonstrated and the high durability of the device was confirmed. This work presents a substantial advancement of the triboelectric nanogenerators toward large-scope energy harvesting and self-powered systems.
机译:与窗格内滑动摩擦相比,滚动摩擦不仅可能消耗较少的机械能,而且在材料磨损最小的情况下具有很高的耐用性。在这项工作中,我们介绍了一种基于滚动带电和静电感应的高效机械能收集方法,旨在提高能量转换效率和设备耐用性。滚动式摩擦发电纳米发电机由多根钢棒组成,中间夹有两个氟化乙烯丙烯(FEP)薄膜。钢棒在FEP薄膜之间的滚动运动会在两个表面上引入摩擦电荷,并导致FEP层背面的每对电极之间的电势差发生变化,从而驱动电子在外部负载中流动。作为发电机,每对输出端子独立工作,并提供425 V的开路电压和5 mA / m(2)的短路电流密度。两个输出端子也可以集成在一起,以实现高达1.6 W / m(2)的总功率密度。研究了可变结构因素的影响,以优化输出性能,并开发了其他基于滚动球的原型,以适应不同类型的机械能源。由于滚动运动的摩擦系数低,因此显示了高达55%的瞬时能量转换效率,并确认了该装置的高耐久性。这项工作提出了摩擦电纳米发电机在大范围能量收集和自供电系统方面的重大进步。

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