论文标题
使用少量石墨烯柔性电极增强底压纳米发电机的功率转化效率
Enhancing triboelectric nanogenerators power conversion efficiency with few-layers graphene flexible electrodes
论文作者
论文摘要
开发便携式和可穿戴电子产品只需要几十微米即可运行,从而促进了寻找低功率能源的搜索。此外,对新的可持续能源的快速增长需求增加了对能够将机械能量转化为电力的能源收获者的兴趣。 Triboelectric纳米发育仪(Tengs)可以提供这种绿色电源。 Tengs技术的最新发展表明,它们可用于从可穿戴的自动传感器到风能和海浪能量收集的不同应用。尽管到目前为止有大量的Tengs发展,但对其工作原则的深入了解仍然缺失。在这项工作中,我们强调了摩擦电材料与电极收集器之间的界面在促成teng的发电方面发挥的基本作用。我们表明,通过在垂直接触模式下运行的tengs中,只需用灵活的几层石墨烯电极替换“标准”金电极,就可以实现26倍的功率密度。在这里,我们阐明了功率输出中这种提升底部的主要机制,描述了电极和底压材料组合的指南,以优化tengs中的机械能转化效率。
The development of portable and wearable electronics requiring only few tens of microwatts to operate fosters the search for low power energy sources. Moreover, the fast-growing demand for new sustainable energy has raised the interest in energy harvesters able to convert mechanical energy into electrical power. Triboelectric nanogenerators (TENGs) can provide such green power supply. Recent developments in TENGs technology show that they can be used in different applications ranging from wearable self-powered sensors to wind and sea wave energy harvesting. In spite of the wide number of TENGs developed so far, an in depth understanding of their working principle is still missing. In this work, we highlight the fundamental role played by the interface between the triboelectric material and the electrode collector in contributing to the TENG's power generation. We show that by simply replacing the 'standard' gold electrodes with flexible few layer graphene electrodes in TENGs operating in vertical contact mode, a 26-fold increase in power density is achieved. Here, we elucidate the main mechanism at the base of such boost in power output, describing guidelines for the combination of electrode and triboelectric materials to optimize the mechanical energy conversion efficiency in TENGs.