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Concurrent Harvesting of Ambient Energy by Hybrid Nanogenerators for Wearable Self-Powered Systems and Active Remote Sensing

机译:杂交纳米液体能源同时采伐空心纳米能源,用于可穿戴自动系统和主动遥感

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摘要

Harvesting energy available from ambient environment is highly desirable for powering personal electronics and health applications. Due to natural process and human activities, steam can be produced by boilers, human perspiration, and the wind exists ubiquitously. In the outdoor environment, these two phenomena usually exist at the same place, which contain heat and mechanical energies simultaneously. However, previous studies have isolated them as separate sources of energy to harvest and hence failed to utilize them effectively. Herein, we present unique hybrid nanogenerators for individually/simultaneously harvesting thermal energy from water vapors and mechanical energy from intermittent wind blowing from the bottom side, which consist of a wind-driven triboelectric nanogenerator (TENG) and pyroelectric piezoelectric nanogenerators (PPENGs). The output power of the PPENG and the TENG can be up to about 184.32 mu W and 4.74 mW, respectively, indicating the TENG plays the dominant role. Our hybrid nanogenerators could provide different applications such as to power digital watch and enable self-powered sensing with wireless transmission. The device could also be further integrated into a face mask for potentially wearable applications. This work not only provides a promising approach for renewable energy harvesting but also enriches potential applications for self -powered systems and wireless sensors.
机译:从环境环境中获得的收获能量非常适合供电的个人电子和健康应用。由于天然工艺和人类活动,蒸汽可以通过锅炉,人的汗水产生,风普遍存在。在室外环境中,这两种现象通常存在于同一位置,其含有热量和机械能。然而,以前的研究已经将其分离为收获的单独的能量来源,因此未能有效地利用它们。在此,我们呈现独特的杂交纳米能器,用于单独/同时从水蒸汽和从底侧吹来的间歇风吹的热能,其由底侧吹来的间歇的风力吹出,这由风力驱动的摩擦纳米电磁体(Teng)和热电压电纳米能器(Ppengs)组成。 PPENG和TENG的输出能力分别可以高达约184.32亩,分别为4.74兆瓦,表明腾腾发挥着主导作用。我们的杂种纳米液可以提供不同的应用,例如电力数字手表,并通过无线传输实现自动传感。该装置还可以进一步集成到面罩中,用于潜在可穿戴应用。这项工作不仅为可再生能源收集提供了有希望的方法,而且还可以丰富自动化系统和无线传感器的潜在应用。

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