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首页> 外文期刊>Advanced Functional Materials >Droplet Energy Harvesting Is Reverse Phenomenon of Electrowetting on Dielectric
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Droplet Energy Harvesting Is Reverse Phenomenon of Electrowetting on Dielectric

机译:液滴能量收获是电介质电润湿的反向现象

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摘要

Electric energy is generated when water droplets slide down electrodes coated with a hydrophobic dielectric layer. The principle of energy generation needs to be clarified for the optimization and scalable design of the energy-harvesting system. In this study, it is shown that droplet energy harvesting is the reverse phenomenon of voltage-driven droplet actuation or electrowetting-on-dielectric (EWOD). For this reverse EWOD, the interfacial energy difference generated between the three-phase contact line of the advancing and receding part of the droplet is the cause of the generation of electric energy. To prove the effect of interfacial energy on energy harvesting, the wetting property of the dielectric layer is controlled by nanopatterning while maintaining the chemical properties. The width and gap of the electrodes and the droplet size determine whether the harvested voltage waveform is monophasic or biphasic. The energy conversion efficiency is determined by the wetting properties of the surface, and the maximum value is as high as 40%.
机译:当水滴滑动涂有疏水介电层的电极时产生电能。需要澄清能源收集系统的优化和可扩展设计的能量发电原理。在该研究中,示出了液滴能量收集是电压驱动液滴致动或电润湿 - 电介质(EWOD)的反向现象。对于这种反向EWOD,推进和后退部分的三相接触线之间产生的界面能量差是电能产生的原因。为了证明界面能量对能量收集的影响,介电层的润湿性是通过纳米透射装置控制的,同时保持化学性质。电极的宽度和间隙和液滴尺寸确定收获的电压波形是单相或双相的。能量转换效率由表面的润湿性能确定,最大值高达40%。

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