Wave energy harvesting based on multilayer beads integrated spherical TENG with switch triggered instant discharging for self-powered hydrogen generation
Wang Zhang,Wencong He,Shuge Dai,Fuxue Ma,Pei Lin,Junlu Sun,Lin Dong,Chenguo Hu
出处
期刊:Nano Energy [Elsevier] 日期:2023-04-11卷期号:111: 108432-108432被引量:40
标识
DOI:10.1016/j.nanoen.2023.108432
摘要
Effective strategies to gain hydrogen energy from harvesting and conversion from ocean energy attract extensive attention in the new energy source field. Remarkably, triboelectric nanogenerator (TENG) presents potential applications for harvesting large-scale blue energy from the ocean. Herein, we propose a self-powered hydrogen generation system by multilayer beads integrated spherical TENG with the power management system (PMS). The triggered switch used in the spherical TENG overcomes the limitation of working frequency through instantaneous driving, significantly improving the output performance and greatly expanding its application range. The six-layer beads integrated TENG presents a significant improvement in converting water wave energy into electric energy, and its power density reaches 21.3 W m−3 at 2 Hz. The integrated TENG charges 470 μF capacitor to 5 V in 200 s, and the hydrogen production rate is about 64.5 μL min−1 under the water wave condition, which overcomes the limitation of external power demands for conventional water electrolysis. Compared with the electrochemical cells driven by solar, our integrated system can operate in all weather conditions without an external power source. This work demonstrates the feasibility of the electrochemical conversion of low-frequency water wave energy into green energy.