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首页> 外文期刊>Nano-Micro Letters >Hierarchical Honeycomb-Structured Electret/Triboelectric Nanogenerator for Biomechanical and Morphing Wing Energy Harvesting
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Hierarchical Honeycomb-Structured Electret/Triboelectric Nanogenerator for Biomechanical and Morphing Wing Energy Harvesting

机译:用于生物力学和变形翼能量收集的分层蜂窝结构驻极体/摩擦纳米液

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Flexible, compact, lightweight and sustainable power sources are indispensable for modern wearable and personal electronics and small-unmanned aerial vehicles (UAVs). Hierarchical honeycomb has the unique merits of compact mesostructures, excellent energy absorption properties and considerable weight to strength ratios. Herein, a honeycomb-inspired triboelectric nanogenerator (h-TENG) is proposed for biomechanical and UAV morphing wing energy harvesting based on contact triboelectrification wavy surface of cellular honeycomb structure. The wavy surface comprises a multilayered thin film structure (combining polyethylene terephthalate, silver nanowires and fluorinated ethylene propylene) fabricated through high-temperature thermoplastic molding and wafer-level bonding process. With superior synchronization of large amounts of energy generation units with honeycomb cells, the manufactured h-TENG prototype produces the maximum instantaneous open-circuit voltage, short-circuit current and output power of 1207 V, 68.5 μA and 12.4 mW, respectively, corresponding to a remarkable peak power density of 0.275 mW cm?3 (or 2.48 mW g?1) under hand pressing excitations. Attributed to the excellent elastic property of self-rebounding honeycomb structure, the flexible and transparent h-TENG can be easily pressed, bent and integrated into shoes for real-time insole plantar pressure mapping. The lightweight and compact h-TENG is further installed into a morphing wing of small UAVs for efficiently converting the flapping energy of ailerons into electricity for the first time. This research demonstrates this new conceptualizing single h-TENG device's versatility and viability for broad-range real-world application scenarios.
机译:灵活,紧凑,轻便和可持续的电源对于现代可穿戴和个人电子和小无人机(无人机)是必不可少的。等级蜂窝具有紧凑型细胞结构的独特优点,优异的能量吸收性能和强度比较的大量重量。这里,提出了一种基于蜂窝蜂窝结构的触点摩擦波状表面的生物力学和无人机传感翼能量收集的蜂窝感发的摩擦纳米料仪(H-Teng)。波浪表面包括通过高温热塑性模制品和晶片级粘合工艺制造的多层薄膜结构(组合聚对苯二甲酸乙二醇酯,银纳米线和氟化乙烯丙烯)。具有卓越的具有蜂窝电池的大量能量发电单元的同步,制造的H-TENG原型分别产生1207 V,68.5μA和12.4 MW的最大瞬时开路电压,短路电流和输出功率,相应于此在手中挤压激发的情况下,峰值功率密度为0.275mm×3(或2.48mw ^ 1)。归因于自反弹蜂窝结构的优良弹性性能,柔性透明的H-Teng可以很容易地压制,弯曲和整合到鞋子中,以实时鞋垫压力测绘。轻质和紧凑的H-Teng进一步安装到小无人机的变形翼中,首次有效地将jilerons的拍打能量转换为电力。该研究表明,这种新的概念化单H-Teng设备的多功能性和可行性,用于广泛的现实世界应用场景。

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