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Matryoshka-inspired hierarchically structured triboelectric nanogenerators for wave energy harvesting

机译:Matryoshka-Inspired的分层结构化摩擦纳米电磁纳米电磁群,用于波浪能收割

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There is a tremendous interest to harvest ocean wave energy due to its promising advantages of high-power density, wide distribution, independence of time of day, weather or seasons, and sustainability. However, most of the current energy harvesters or converters based on electromagnetic generators are suffering from unsatisfactory efficiency at low ocean wave triggering frequency and have the drawbacks of complex design, high cost and ease of corrosion in seawater. In this work, we report a matryoshka-inspired hierarchically structured triboelectric nanogenerator (HS-TENG) by nest-assembling multiple shells with decreasing sizes for effectively harvesting low-frequency wave energies with low-cost, high power density and high efficiency. As a proof-of-concept, we have fabricated a three-hierarchical-level HS-TENG by nesting three spherical acrylic shells filled with polytetrafluoroethylene (PTFE) balls into the gap spaces between the neighboring shells. The important factors that may affect the energy harvesting performance of the HS-TENG are studied, including the size and number of moving balls, the diameter of the holding shell, the amplitude and frequency of wave actuation, as well as the orientation angle between wave motion direction and electrode gap. It is demonstrated that the HS-TENG has superior output performance over the traditional single ball TENG (SB-TENG), with a maximum output peak power of 544 mu W at a low frequency of 2 Hz, more than 6.5 times of that obtained by a SB-TENG with the same size, capable of driving different wearable electronics. Based on the optimized design, we further demonstrate that a HS-TENG network formed by a 3 x 3 device array can directly lighten dozens of light-emitting diodes and power an electronic thermometer for monitoring water condition, indicating its capability in effectively harvesting water wave energy for potential large-scale deployment in the ocean. This study provides an innovative hierarchical structure that can effectively improve the output performance of TENGs and paves the way for developing next-generation high-performance TENGs for blue energy harvesting.
机译:由于其高功率密度,广泛分布,天气或季节的独立性以及可持续性以及可持续性的优势,收获海浪能量巨大兴趣。然而,基于电磁发生器的大多数电流能量收割机或转换器在低海浪触发频率下患有不令人满意的效率,并且具有复杂的设计,高成本和海水腐蚀的缺点。在这项工作中,我们通过嵌套多个壳体在嵌套尺寸下嵌套,以便有效地收集低成本,高功率密度和高效率,通过嵌套多壳来报告Matryoshka启发的分层结构的摩擦纳米电磁纳米电磁纳米料(HS-Teng)。作为概念验证,我们通过嵌套三个球形丙烯酸壳来制造三个层级HS-teng,其中三个球形丙烯酸壳填充有聚四氟乙烯(PTFE)球,进入相邻壳之间的间隙空间。研究了可能影响HS-Teng的能量收集性能的重要因素,包括移动球的大小和数量,保持壳的直径,波浪驱动的幅度和频率,以及波之间的方向角运动方向和电极间隙。结果表明,HS-TENG在传统的单球腾(SB-TENG)上具有卓越的输出性能,最大输出峰值功率为544亩,低频为2 Hz,达到的6.5倍以上一个具有相同尺寸的SB-teng,能够驱动不同的可穿戴电子设备。基于优化的设计,我们进一步证明了由3×3器件阵列形成的HS-TUNE网络可以直接削弱几十个发光二极管,并为电子温度计提供电力,以监测水状况,表明其能够有效收获水波的能力能源在海洋中潜在的大规模部署。本研究提供了一种创新的等级结构,可以有效地提高腾冲的输出性能,为开发开发下一代高性能腾冲的腾出的历程,以实现蓝色能量收集。

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