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用于高性能柔性超级电容器的聚苯胺纳米棒在碳布上的一步电沉积法

One-Step Electrodeposition of Polyaniline Nanorods on Carbon Cloth for High-Performance Flexible Supercapacitors.

作者信息

Li Jinmei, Zhao Lining, Liu Peng

机构信息

State Key Laboratory of Applied Organic Chemistry, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou 730000, China.

出版信息

Langmuir. 2023 Oct 10;39(40):14297-14307. doi: 10.1021/acs.langmuir.3c01594. Epub 2023 Sep 27.

DOI:10.1021/acs.langmuir.3c01594
PMID:37756149
Abstract

The electrochemical performance of the carbon cloth (CC)-based electrodes is determined by the kind, content, morphology, and size of the modified pseudocapacitive materials, as well as the interaction with CC. Also, such structural parameters were mainly dependent on the deposition condition. More uniform polyaniline (PANI) could be obtained by electrochemical polymerization in comparison to chemical oxidation polymerization. However, two steps of electrodeposition were usually needed for nucleation and growth. Here, based on the comprehensive optimization of the electrodeposition condition, well-defined PANI nanorods anchored on the functionalized carbon cloth (FCC) as flexible electrodes (FCC@PANI) were synthesized by a facile one-step electrochemical polymerization. Compared with the FCC electrode, the resultant FCC@PANI-4 sample possessed good cycling stability (98.3% capacitance retention after 10,000 cycles), higher specific capacitances of 2312 mF cm (1.0 mA cm) and 107 F g (1.0 A g) with the boosting ratio in the areal specific capacitance (), and mass specific capacitances () of 169 and 181%, respectively. The improvement in both specific capacitance and cycling stability was obtained by the strong interaction between the FCC and the modified PANI nanorods with enhanced utilization efficiency of electroactive materials. Furthermore, the symmetric solid-state device assembled using the FCC@PANI-4 electrode delivered a maximum energy density of 0.079 mWh cm at a power density of 0.363 mW cm.

摘要

基于碳布(CC)的电极的电化学性能取决于修饰的赝电容材料的种类、含量、形态和尺寸,以及与CC的相互作用。此外,这些结构参数主要取决于沉积条件。与化学氧化聚合相比,通过电化学聚合可以获得更均匀的聚苯胺(PANI)。然而,通常需要两步电沉积来进行成核和生长。在此,基于对电沉积条件的综合优化,通过简便的一步电化学聚合合成了锚定在功能化碳布(FCC)上的定义明确的PANI纳米棒作为柔性电极(FCC@PANI)。与FCC电极相比,所得的FCC@PANI-4样品具有良好 的循环稳定性(10000次循环后电容保持率为98.3%),更高的比电容,在面比电容()和面比电容()分别为2312 mF cm(1.0 mA cm)和107 F g(1.0 A g)时,提升率分别为169%和181%。通过FCC与修饰的PANI纳米棒之间的强相互作用以及提高电活性材料的利用效率,实现了比电容和循环稳定性的提高。此外,使用FCC@PANI-4电极组装的对称固态器件在功率密度为0.363 mW cm时的最大能量密度为0.079 mWh cm。

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