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Carbon nano thorn arrays based water/cold resisted nanogenerator for wind energy harvesting and speed sensing

机译:基于碳纳米荆棘阵列的水/耐寒纳米发电机,用于风能收集和速度传感

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摘要

Triboelectric nanogenerator (TENG), coupling the contact electrification and electrostatic induction, has been proved to be a promising energy harvester due to its excellent reliability, considerable output power, high efficiency, and low cost. Herein, with the designed hydrophobic carbon material methyl-graphdiyne (M-GDY) based nano thorn arrays as TENG core element, we developed a novel high-performance self-powered wind speed sensor possessing remarkable water/cold resistance, which can stably run for a long time and be directly applied in the typical extreme environment. As the electrode composing uniformly distributed methyl groups in a twodimensional plane, M-GDY can provide a convenient path for rapid charge transfer through interfaces. By in-situ growing M-GDY with nano thorn arrays structure directly on the surface of the copper foil to provide enhanced contact area and superhydrophobic properties, such M-GDY based TENG can be realized simultaneously and induce excellent performance with a stable response and real-time voltage feedback. Significantly, the superhydrophobic properties of that M-GDY-based TENG endow it with broad applicability in humid conditions. Besides, for the unique carbon-rich structure of the M-GDY array, the M-GDY-based TENG can be well applied with stable output performance under different temperatures ranging from -20 degrees C to 30 degrees C. The specially designed TENG with GDY-based material affords us a novel TENG core material and expands self-powered devices for a specific environment.
机译:摩擦纳米发电机(TENG)将接触式带电和静电感应耦合在一起,因其优异的可靠性、可观的输出功率、高效率和低成本而被证明是一种很有前途的能量收集器。本文以设计疏水碳材料甲基石墨炔(M-GDY)基纳米刺阵列为TENG核心元件,开发了一种新型高性能自供电风速传感器,具有优异的耐水/耐寒性能,可长期稳定运行,可直接应用于典型的极端环境。M-GDY作为在二维平面上由均匀分布的甲基组成的电极,可以为通过界面的快速电荷转移提供便捷的路径。通过直接在铜箔表面原位生长具有纳米刺阵列结构的M-GDY,以提供增强的接触面积和超疏水性能,可以同时实现这种基于M-GDY的TENG并具有稳定的响应和实时电压反馈的优异性能。值得注意的是,基于M-GDY的TENG的超疏水特性使其在潮湿条件下具有广泛的适用性。此外,由于M-GDY阵列独特的富碳结构,基于M-GDY的TENG在-20°C至30°C的不同温度范围内都能很好地应用,具有稳定的输出性能。专门设计的TENG采用基于GDY的材料,为我们提供了一种新颖的TENG核心材料,并扩展了针对特定环境的自供电设备。

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