Tang Jiayue, Zhao Yuanyuan, Wang Mi, Wang Dianyu, Yang Xuan, Hao Ruiran, Wang Mingzhan, Wang Yanlei, He Hongyan, Xin John H, Zheng Shuang
Department of Chemistry, Hong Kong University of Science and Technology, Hong Kong, China.
Institute of Textiles & Clothing, Hong Kong Polytechnic University, Hong Kong, China.
Nat Commun. 2022 Mar 11;13(1):1291. doi: 10.1038/s41467-022-28998-y.
Circadian humidity fluctuation is an important factor that affects human life all over the world. Here we show that spherical cap-shaped ionic liquid drops sitting on nanowire array are able to continuously output electricity when exposed to outdoor air, which we attribute to the daily humidity fluctuation induced directional capillary flow. Specifically, ionic liquid drops could absorb/desorb water around the liquid/vapor interface and swell/shrink depending on air humidity fluctuation. While pinning of the drop by nanowire array suppresses advancing/receding of triple-phase contact line. To maintain the surface tension-regulated spherical cap profile, inward/outward flow arises for removing excess fluid from the edge or filling the perimeter with fluid from center. This moisture absorption/desorption-caused capillary flow is confirmed by in-situ microscope imaging. We conduct further research to reveal how environmental humidity affects flow rate and power generation performance. To further illustrate feasibility of our strategy, we combine the generators to light up a red diode and LCD screen. All these results present the great potential of tiny humidity fluctuation as an easily accessible anytime-and-anywhere small-scale green energy resource.
昼夜湿度波动是影响全球人类生活的一个重要因素。在此我们表明,置于纳米线阵列上的球冠形离子液体液滴在暴露于室外空气时能够持续输出电力,我们将此归因于每日湿度波动引起的定向毛细流动。具体而言,离子液体液滴能够在液/气界面周围吸收/解吸水,并根据空气湿度波动而膨胀/收缩。而纳米线阵列对液滴的固定抑制了三相接触线的前进/后退。为了维持表面张力调节的球冠形状,会产生向内/向外的流动,以从边缘去除多余的流体或从中心用流体填充周边。这种吸湿/解吸引起的毛细流动通过原位显微镜成像得到证实。我们进行了进一步的研究,以揭示环境湿度如何影响流速和发电性能。为了进一步说明我们策略的可行性,我们将这些发电机组合起来点亮一个红色二极管和液晶显示屏。所有这些结果都表明,微小的湿度波动作为一种随时随地都易于获取的小规模绿色能源具有巨大潜力。