材料科学
石墨烯
摩擦电效应
聚酰亚胺
电极
光电子学
激光器
功率密度
纳米技术
复合材料
化学工程
功率(物理)
光学
物理
工程类
物理化学
化学
量子力学
图层(电子)
作者
Yun Chen,Bin Xie,Junyu Long,Yicheng Kuang,Xin Chen,Maoxiang Hou,Jian Gao,Shuang Zhou,Bi Fan,Yunbo He,Yuan‐Ting Zhang,Ching‐Ping Wong,Zuankai Wang,Ni Zhao
标识
DOI:10.1002/adma.202104290
摘要
Abstract Laser‐induced graphene (LIG) has emerged as a promising and versatile method for high‐throughput graphene patterning; however, its full potential in creating complex structures and devices for practical applications is yet to be explored. In this study, an in‐situ growing LIG process that enables to pattern superhydrophobic fluorine‐doped graphene on fluorinated ethylene propylene (FEP)‐coated polyimide (PI) is demonstrated. This method leverages on distinct spectral responses of FEP and PI during laser excitation to generate the environment preferentially for LIG formation, eliminating the need for multistep processes and specific atmospheres. The structured and water‐repellant structures rendered by the spectral‐tuned interfacial LIG process are suitable as the electrode for the construction of a flexible droplet‐based electricity generator (DEG), which exhibits high power conversion efficiency, generating a peak power density of 47.5 W m −2 from the impact of a water droplet 105 µL from a height of 25 cm. Importantly, the device exhibits superior cyclability and operational stability under high humidity and various pH conditions. The facile process developed can be extended to realize various functional devices.
科研通智能强力驱动
Strongly Powered by AbleSci AI