Liu Liqiang, Yang Xiya, Zhao Leilei, Hong Hongxin, Cui Hui, Duan Jialong, Yang Qianming, Tang Qunwei
Institute of New Energy Technology, College of Information Science and Technology, Jinan University, Guangzhou 510632, People's Republic of China.
School of Electronics and Information Engineering, Tongji University, Shanghai 201804, People's Republic of China.
ACS Nano. 2021 Jun 22;15(6):9412-9421. doi: 10.1021/acsnano.1c00345. Epub 2021 May 7.
Development of ocean energy conversion technique is a strategic requirement to optimize the energy structure and expand the "blue economic" space. Triboelectric nanogenerator (TENG) provides a potential approach for efficiently capturing wave energy with its unique advantages. Herein, a nodding duck structure multi-track freestanding triboelectric-layer nanogenerator (NDM-FTENG) is developed for ocean wave energy harvesting at a low-frequency range. Configuration parameters including track numbers, connection approach, oscillation frequency, and swing amplitude on electrical output performances of NDM-FTENG are systematically investigated and optimized; the maximum instantaneous power density of 4 W/m is obtained by one NDM-FTENG block with 320 LEDs lighted up simultaneously. Overall, NDM-FTENG is proved to be an efficient device for driving small electronics with excellent stability and durability in a real water wave environment, and the power potential can be further magnified by combining more NDM-FTENG devices in parallel to form a network toward large-scale blue energy harvesting.
海洋能源转换技术的发展是优化能源结构和拓展“蓝色经济”空间的战略需求。摩擦纳米发电机(TENG)凭借其独特优势为高效捕获波浪能提供了一种潜在途径。在此,开发了一种点头鸭结构多轨道独立摩擦电层纳米发电机(NDM-FTENG),用于在低频范围内收集海洋波浪能。系统研究并优化了包括轨道数量、连接方式、振荡频率和摆动幅度等配置参数对NDM-FTENG电输出性能的影响;一个NDM-FTENG模块同时点亮320个发光二极管时,获得了4 W/m的最大瞬时功率密度。总体而言,NDM-FTENG被证明是一种在实际水波环境中驱动小型电子设备的高效装置,具有出色的稳定性和耐久性,并且通过并联更多NDM-FTENG装置形成网络以实现大规模蓝色能源收集,其功率潜力可以进一步放大。