Song Haomin, Bei Zongmin, Voronin Aleksandr S, Umaiya Kunjaram Uma Pratheebha, Truscott Tadd T, Schwingenschlögl Udo, Vrouwenvelder Johannes S, Gan Qiaoqiang
Material Science Engineering, Physical Science Engineering Division, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia.
Shared Instrumentation Laboratories, School of Engineering & Applied Sciences, The State University of New York at Buffalo, Buffalo, NY 14260, USA.
iScience. 2024 Feb 21;27(3):109291. doi: 10.1016/j.isci.2024.109291. eCollection 2024 Mar 15.
The pursuit of cost-effective, high-voltage electricity generators activated by droplets represents a new frontier in hydropower technology. This study presents an economical method for crafting droplet generators using common materials such as solid polytetrafluoroethylene (PTFE) films and readily available tapes, eliminating the need for specialized cleanroom facilities. A thorough investigation into voltage-limiting factors, encompassing device capacitance and induced electrode charges, reveals specific areas with potential for optimization. A substantial enhancement in the open-circuit voltage (V) was achieved, reaching approximately 282.2 ± 27.9 V-an impressive increase of around 60 V compared to earlier benchmarks. One device showcased its capability to power 100 LEDs concurrently, underscoring its efficacy. Ten such devices created diverse luminous patterns with uniform light intensity for each LED, showcasing the practical potential of the approach. The methodology's cost-effectiveness results in a remarkable cost reduction compared to solution-based materials, paving the way for the widespread adoption of large-scale water droplet energy harvesting.
追求由液滴驱动的经济高效的高压发电机是水电技术的一个新前沿。本研究提出了一种经济的方法,使用诸如固体聚四氟乙烯(PTFE)薄膜和现成胶带等常见材料制作液滴发电机,无需专门的洁净室设施。对包括器件电容和感应电极电荷在内的电压限制因素进行的深入研究揭示了具有优化潜力的特定领域。开路电压(V)有了显著提高,达到约282.2±27.9 V,与早期基准相比令人印象深刻地增加了约60 V。一个器件展示了同时为100个发光二极管供电的能力,凸显了其功效。十个这样的器件为每个发光二极管创造了具有均匀光强的不同发光模式,展示了该方法的实际潜力。该方法的成本效益导致与基于溶液的材料相比成本显著降低,为大规模水滴能量收集的广泛应用铺平了道路。