Lee Seung-Hwan, Lee Hyun-Woo, Baek So Hyun, Yun Jeungjai, Kwon Yongbum, Song Yoseb, Kim Bum Sung, Choa Yong-Ho, Jeong Da-Woon
Korea National Institute of Rare Metals, Korea Institute of Industrial Technology, Incheon 21655, Republic of Korea.
Department of Materials Science and Chemical Engineering, Hanyang University, Ansan 15588, Republic of Korea.
Polymers (Basel). 2024 Feb 4;16(3):433. doi: 10.3390/polym16030433.
Power generation technologies based on water movement and evaporation use water, which covers more than 70% of the Earth's surface and can also generate power from moisture in the air. Studies are conducted to diversify materials to increase power generation performance and validate energy generation mechanisms. In this study, a water-based generator was fabricated by coating cellulose acetate with carbon black. To optimize the generator, Fourier-transform infrared spectroscopy, specific surface area, zeta potential, particle size, and electrical performance analyses were conducted. The developed generator is a cylindrical generator with a diameter of 7.5 mm and length of 20 mm, which can generate a voltage of 0.15 V and current of 82 μA. Additionally, we analyzed the power generation performance using three factors (physical properties, cation effect, and evaporation environment) and proposed an energy generation mechanism. Furthermore, we developed an eco-friendly and low-cost generator using natural fibers with a simple manufacturing process. The proposed generator can contribute to the identification of energy generation mechanisms and is expected to be used as an alternative energy source in the future.
基于水的流动和蒸发的发电技术利用水,水覆盖了地球表面的70%以上,并且还能从空气中的水分发电。人们开展研究以实现材料多样化,从而提高发电性能并验证能量产生机制。在本研究中,通过用炭黑包覆醋酸纤维素制备了一种水基发电机。为了优化该发电机,进行了傅里叶变换红外光谱、比表面积、zeta电位、粒径和电性能分析。所开发的发电机是一种圆柱形发电机,直径为7.5毫米,长度为20毫米,可产生0.15伏的电压和82微安的电流。此外,我们使用三个因素(物理性质、阳离子效应和蒸发环境)分析了发电性能,并提出了一种能量产生机制。此外,我们利用天然纤维开发了一种环保且低成本的发电机,其制造工艺简单。所提出的发电机有助于识别能量产生机制,预计未来将用作替代能源。