School of Materials Science and Engineering , Georgia Institute of Technology , Atlanta , Georgia 30332-0245 , United States.
Department of Mechanical and Automation Engineering , The Chinese University of Hong Kong , Shatin, N.T. , Hong Kong SAR , China.
ACS Appl Mater Interfaces. 2018 May 2;10(17):14708-14715. doi: 10.1021/acsami.8b01635. Epub 2018 Apr 23.
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 μW 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.
从环境中获取可用能源,为个人电子产品和医疗应用提供动力,这是非常可取的。由于自然过程和人类活动,锅炉、人体出汗和风都可以产生蒸汽。在户外环境中,这两种现象通常同时存在,它们同时包含热能和机械能。然而,以前的研究将它们作为单独的能源收集,因此未能有效地利用它们。在这里,我们提出了独特的混合纳米发电器,可以分别/同时从水蒸气中收集热能,从底部间歇性吹来的风中收集机械能,它由一个风驱动的摩擦纳米发电机(TENG)和热释电-压电纳米发电机(PPENGs)组成。PPENG 和 TENG 的输出功率分别可达约 184.32 μW 和 4.74 mW,表明 TENG 起主导作用。我们的混合纳米发电器可以为不同的应用提供动力,如为数字手表供电,并实现带有无线传输的自供电感应。该设备还可以进一步集成到口罩中,用于潜在的可穿戴应用。这项工作不仅为可再生能源收集提供了一种很有前途的方法,而且丰富了自供电系统和无线传感器的潜在应用。