超级电容器
材料科学
电容
聚吡咯
电极
平面的
基质(水族馆)
纳米技术
灵活性(工程)
储能
光电子学
化学气相沉积
导电聚合物
功率密度
电容器
集电器
沉积(地质)
多孔性
复合材料
作者
Shu‐Min Lin,Shuang Luo,Huiying Yan,Zhouqishuo Cai,Yanan Zhao,Jinmeng Zhang,Hua Bai
标识
DOI:10.1021/acsami.5c17295
摘要
Flexible planar supercapacitors have garnered significant attention as potential power supplies for wearable and portable devices. In this work, we present a flexible planar supercapacitor utilizing delignified natural wood as the substrate and polypyrrole as the electrode material. The interdigitated polypyrrole electrodes are fabricated on the substrate via vapor deposition polymerization, with the polypyrrole thoroughly embedded within the wood substrate’s channels across its thickness. This design significantly enhances the areal-specific capacitance and stability of the device. The electrodes achieve an impressive areal-specific capacitance of 1903.0 mF cm–2, while the planar-integrated supercapacitor constructed with these electrodes exhibits an areal-specific capacitance of 172.0 mF cm–2. Benefiting from the excellent flexibility of delignified wood, three-dimensional distribution, and strong binding to the substrate of polypyrrole, the planar supercapacitor demonstrates outstanding flexibility and mechanical stability. This study demonstrates an innovative approach to utilizing porous insulating substrates for fabricating planar supercapacitors and highlights possibilities for incorporating eco-friendly wood into energy storage applications.
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