Institute for Nanoscience and Nanotechnology, Sharif University of Technology, Tehran, 14588-89694, Iran.
Department of Medical Physics and Biomedical Engineering, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Sci Rep. 2020 Apr 30;10(1):7312. doi: 10.1038/s41598-020-64490-7.
Triboelectric nanogenerators (TENGs) offer an emerging market of self-sufficient power sources, converting the mechanical energy of the environment to electricity. Recently reported high power densities for the TENGs provide new applications opportunities, such as self-powered sensors. Here in this research, a flexible graphene oxide (GO) paper was fabricated through a straightforward method and utilized as the electrode of TENGs. Outstanding power density as high as 1.3 W.m, an open-circuit voltage up to 870 V, and a current density of 1.4 µA.cm has been extracted in vertical contact-separation mode. The all-flexible TENG has been employed as a self-powered humidity sensor to investigate the effect of raising humidity on the output voltage and current by applying mechanical agitation in two forms of using a tapping device and finger tapping. Due to the presence of superficial functional groups on the GO paper, water molecules are inclined to be adsorbed, resulting in a considerable reduction in both generated voltage (from 144 V to 14 V) and current (from 23 µA to 3.7 µA) within the range of relative humidity of 20% to 99%. These results provide a promising applicability of the first suggested sensitive self-powered GO TENG humidity sensor in portable/wearable electronics.
摩擦纳米发电机(TENG)为自供电能源提供了一个新兴市场,可将环境中的机械能转化为电能。最近报道的 TENG 具有较高的功率密度,为自供电传感器等新应用提供了机会。在这项研究中,通过一种简单的方法制备了柔性氧化石墨烯(GO)纸,并将其用作 TENG 的电极。在垂直接触-分离模式下,提取出高达 1.3 W.m 的出色功率密度、高达 870 V 的开路电压和 1.4 µA.cm 的电流密度。全柔性 TENG 已用作自供电湿度传感器,通过使用敲击装置和手指敲击两种形式的机械搅拌来研究提高湿度对输出电压和电流的影响。由于 GO 纸表面存在官能团,水分子易于被吸附,导致在相对湿度为 20%至 99%的范围内,产生的电压(从 144 V 降至 14 V)和电流(从 23 µA 降至 3.7 µA)都有相当大的降低。这些结果为首个提出的灵敏自供电 GO TENG 湿度传感器在便携式/可穿戴电子产品中的应用提供了有前景的依据。