Preparation and Electrochemical Properties of Polyaniline Nanostructures Using Vertically Aligned Mesochannels as Confinement

聚苯胺 材料科学 电化学 电极 纳米结构 氧化铟锡 纳米技术 介孔材料 超级电容器 电化学动力学 化学工程 基质(水族馆) 电容 纳米线 导电聚合物 聚合物 化学 薄膜 复合材料 海洋学 地质学 工程类 生物化学 物理化学 催化作用 聚合
作者
Yuping Li,Kai Zhang,Jing Ma,Yufeng Liu,Xiaohong Liang,Haicheng Xuan,Peide Han
出处
期刊:ChemElectroChem [Wiley]
卷期号:9 (11) 被引量:1
标识
DOI:10.1002/celc.202200110
摘要

Abstract One‐dimensional conducting polymer nanowire arrays have shown promising potential in applications of electrochemical supercapacitors, sensors, and more. Herein, vertically aligned mesoporous silica films (VMSF) with hexagonally packed mesochannels were generated on indium‐tin oxide (ITO) electrodes by an electrochemically‐assisted self‐assembly (EASA) method. The prepared VMSF/ITO electrode was then exploited as a hard template for electrochemical growth of well‐aligned polyaniline (PANI) nanofilaments within silica mesochannels, eventually forming a PANI/VMSF/ITO composite electrode. The electrochemical conditions of the PANI growth through the mesochannnels were investigated in detail, and the electrochemical capacitance was also tested. It is shown that the resulting nanofilaments separated through silica walls exhibit significantly improved electrochemical performance, including better electrochemical reversibility and high specific capacitance (3.00 mF/cm 2 at 20 μA/cm 2 ), which is increased by about 152 % in comparison to PANI directly on an ITO (PANI/ITO) substrate. Such an improved electrochemical performance is mainly contributed to by enhanced charge transfer efficiency and improved electrochemical reaction kinetics resulting from the well‐aligned PANI nanostructure.
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