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A Parametric Study of a Sponge-based Triboelectric Energy Harvester

机译:基于海绵的摩擦能收割机的参数研究

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This paper discusses the parametric study of a sponge-based triboelectric energy harvester (SBTENG). Different from the conventional energy harvester, we introduce microporous in our prototype to create a sponge-like structure. The porous is hypothesized to trap the charge from the kinetic movement and, hence, increase - the voltage output. To prove the hypothesis, numerical simulation has been conducted and it shows that the introduction of the porous structure can improve the charge difference by 50.8%, as compared with the nonporous structure. To characterize, we have further performed experimental studies to investigate the electrical output at 0%, 25%, 45%, and 65% NaCl concentration. The result shows significant improvement of the electrical output in the NaCl concentration. We also demonstrated a proof-of-concept experiment to power up LEDs using our developed SBTENG. This study provides a useful guideline for the triboelectric sensor design.
机译:本文讨论了基于海绵的摩擦能收割机(SBTENG)的参数研究。 与传统的能量收割机不同,我们在原型中引入微孔以产生海绵状结构。 多孔被假设以使电荷从动力学运动中捕获,因此增加 - 电压输出。 为了证明假设,已经进行了数值模拟,并且表明,与无孔结构相比,多孔结构的引入可以将电荷差的提高50.8%。 为了表征,我们进一步进行了实验研究,以研究0%,25%,45%和65%NaCl浓度的电输出。 结果显示了NaCl浓度中电输出的显着改善。 我们还展示了使用我们发达的SBTENG来启动LED的概念证据实验。 本研究为摩擦传感器设计提供了有用的准则。

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