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Super-robust and frequency-multiplied triboelectric nanogenerator for efficient harvesting water and wind energy

机译:超强且频率乘以摩擦纳米电磁炉,用于有效收获水和风能

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摘要

Mechanical energy in ambient, such as water wave, wind, vibration, and human activities, is a green energy that is widely distributed and universally achievable. However, this type of energy has ultra-low frequencies and variable amplitudes, so it is rather challenging to collect them at high efficiency. Here we report a pendulum inspired triboelectric nanogenerator (P-TENG), which could not only boost the output frequency multiple times using a pendulum structure, but also hugely improve the harvesting efficiency through a transformation of impact kinetic energy into potential energy. The P-TENG also has ultrahigh sensitivity and active response to mechanical triggering from a random direction and superior durability for long time operation. A single trigger from the environment, the P-TENG shows a continuous electrical output for 120 s at a frequency of 2 Hz, and its output energy of which is 14.2 times larger than the energy of conventional free-standing TENG. Owing to the air gap between the triboelectric layer and electrodes and the mechanism of electrostatic induction, the P-TENG can work with little frictional resistance and surface wearing, largely enhancing its robustness and durability. The network of P-TENGs was successfully demonstrated to scavenge water wave or wind energy as sustainable power sources. Given the features of exceptional output performance, unprecedented robustness and universal applicability resulting from distinctive mechanism and structure, the P-TENG is a promising method to efficiently harvest energy from the ambient environment with possibility contributing to the blue energy.
机译:环境中的机械能,如水波,风,振动和人类活动,是一种绿色能量,广泛分布和普遍可实现。然而,这种类型的能量具有超低频率和可变幅度,因此以高效率收集它们是相当具有挑战性的。在这里,我们报告了一个垂直的摩擦纳米电磁炉(p-teng),其不仅可以使用摆锤结构使输出频率多次提高,而且还通过将冲击动能转化为潜在能量来提高收获效率。 P-Teng还具有超高敏感性和主动响应,从随机方向和较好的耐久性进行长时间操作。来自环境的单个触发,P-Teng表示以2 Hz的频率为120秒的连续电气输出,其输出能量比传统独立腾的能量大14.2倍。由于摩擦电层和电极之间的气隙和静电感应的机理,P-Teng可以使用很少的摩擦阻力和表面穿过,很大程度上提高其鲁棒性和耐用性。成功证明了P-Tengs的网络,以将水波或风能作为可持续电源淘汰。鉴于特殊输出性能的特点,由独特机制和结构产生的前所未有的鲁棒性和普遍适用性,P-Teng是一种有效的方法,可以从环境环境中有效地收获能量,这是有助于蓝能的可能性。

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