材料科学
电
电压
热电联产
工艺工程
分层(地质)
稳健性(进化)
发电
汽车工程
能量收集
超级电容器
电极
电压降
动能
可再生能源
水溶液
发电机
储能
低压
润湿
机械工程
机械能
发电机(电路理论)
电势能
复合材料
激光烧蚀
可扩展性
环境科学
电力
下降(电信)
电容器
环境友好型
水能关系
电容感应
发电站
使用寿命
降级(电信)
汽车工业
作者
Xinran Dong,Xinda Zhu,Lin Gan,Xiongfeng Zhou,Cong Wang,Ji‐an Duan,Minjie Liu
标识
DOI:10.1002/adfm.202528188
摘要
ABSTRACT Addressing the global water‐energy nexus requires robust cogeneration technologies. Integrating fog harvesters with droplet‐based electricity generators (DEGs) hold promises for harvesting distributed water and energy. However, conventional DEGs are susceptible to failure under mechanical stress and in corrosive aqueous environments because of electrode delamination and degradation. Herein, we report a laser‐induced‐graphene‐enabled droplet‐based electricity generator (LIG‐DEG) that simultaneously harvests fog droplets and water kinetic energy, while exhibiting exceptional robustness that preserves device integrity and electrical performance. By fabricating laser‐induced graphene (LIG) electrodes in situ on polyimide substrates via laser processing, we achieve seamless electrode‐substrate integration, overcoming the delamination and degradation that limit conventional DEGs. The LIG‐DEG demonstrates outstanding mechanical and chemical robustness, maintaining an output voltage above 100 V after 21 000 buckling cycles, 210 abrasion cycles, and immersion in HCl, NaOH, or ethanol. Moreover, synergistically integrated with a bioinspired fog harvester, our design achieves cogeneration with a water collection rate of 250 g·h − 1 and sustained output voltage of 105 V in foggy environments. This scalable approach provides a durable solution for water‐energy harvesting in coastal or industrial high‐humidity regions.
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