材料科学
超级电容器
细菌纤维素
膜
纤维素
纳米纤维
电极
电容
聚吡咯
聚合物
聚合
电解质
导电聚合物
化学工程
纳米技术
储能
复合材料
物理
工程类
物理化学
功率(物理)
化学
遗传学
生物
量子力学
作者
Jie Zhou,Yuanliang Yan,Jian Tang,Weihua Tang
标识
DOI:10.1016/j.ensm.2019.03.024
摘要
Conductive bacterial cellulose (BC) membranes are a fascinating class of lightweight and flexible electrodes for electrochemical energy storage. Herein, we demonstrate a simple and efficient method to prepare polypyrrole (PPy)-coated BC electrodes via a template-sacrificing polymerization. Polydopamines serve as the interfacial modifier for the engagement of ZIF-67 polyhedrons along the BC nanofibers. Subsequent metal-organic frameworks-template sacrificing polymerization results in well-ordered PPy alignments along BC nanofibers to afford recovered electrolyte accessible channels. The binder-free electrode exhibits a high areal capacitance of 1.71 F cm−2 (0.4 mA cm−2) and an excellent capacitance retention of 59.8% at 20 mA cm−2. We further use the electrodes to assemble a flexible symmetric supercapacitor, which shows an areal energy density of 89.8 μWh cm−2 at a power density of 0.31 mW cm−2. This work holds great promise in fabricating flexible electrodes for portable energy storage devices.
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