Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7834912 | Applied Surface Science | 2018 | 34 Pages |
Abstract
Asymmetric supercapacitors (ASCs) based on pseudocapacitor electrode materials are vital to improve the electrochemical properties of devices in aqueous electrolytes. This study fabricates hollow N-doped carbon sphere (h-NCS) to produce h-NCS@PANI nanocomposite as positive electrode and α-MoO3 as negative electrode to assemble ASC device. In particular, a facile template-free synthesis method, catalyzed by Cu2+, is used to prepare hollow PANI nanosphere precursor to build h-NCS. The mechanism of the precursor formation is illustrated in detail. After polymerization of PANI on the surface of h-NCS, the capacitance increases to 327â¯Fâ¯gâ1 at 1â¯Aâ¯gâ1. Furthermore, a hydrothermal reaction is carried out to produce α-MoO3 negative electrode material. The maximum specific capacitance of 720â¯Fâ¯gâ1 is achieved at 1â¯Aâ¯gâ1. The obtained h-NCS@PANI and α-MoO3 are utilized to construct an ASC device. The electrochemical properties of this device are investigated comprehensively. The maximum energy density of 34.1â¯Wâ¯hâ¯kgâ1 and power density of 9350.6â¯Wâ¯kgâ1 are observed, which provide an insight into the development of ASCs.
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Authors
Xiaoqin Li, Xinxin Xiang, Yunhua Liu, Dan Xiao,