详细信息

Interfacial Synthesis and Supercapacitive Performance of Hierarchical Sulfonated Carbon Nanotubes/Polyaniline Nanocomposites  ( SCI-EXPANDED收录 EI收录)  

文献类型:期刊文献

英文题名:Interfacial Synthesis and Supercapacitive Performance of Hierarchical Sulfonated Carbon Nanotubes/Polyaniline Nanocomposites

作者:Sun, Minqiang[1];Wang, Gengchao[1];Li, Xingwei[1];Cheng, Qilin[1];Li, Chunzhong[1]

机构:[1]E China Univ Sci & Technol, Key Lab Ultrafine Mat, Minist Educ,Sch Mat Sci & Engn, Shanghai Key Lab Adv Polymer Mat, Shanghai 200237, Peoples R China

年份:2012

卷号:51

期号:10

起止页码:3981

外文期刊名:INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH

收录:;EI(收录号:20121214878061);WOS:【SCI-EXPANDED(收录号:WOS:000301406900018)】;

基金:We greatly appreciate the financial supports of the National Natural Science Foundation of China (Grants 21044005, 51173042, and 20925621), Fundamental Research Funds for the Central Universities, Innovation Program of Shanghai Municipal Education Commission (Grant 11ZZ55), and the Shanghai Key Laboratory Project (Grant 08DZ2230500).

语种:英文

外文关键词:Oxidants - Yarn - Charge transfer - Nanocomposites - Microstructure - Capacitance

摘要:The novel hierarchical PANI/sMWCNT nanocomposites were synthesized through the interfacial polymerization method in the presence of the sulfonated multiwalled carbon nanotubes (sMWCNT), and the effect of oxidant content on the chain structure of PANT, the microstructure, and supercapacitive performance of the composites were investigated systematically. FT-IR spectra revealed the presence of pi-pi interactions between PANT and sMWCNT, and the charge-transfer composites were formed. It was found that more charge-transfer composites developed when the oxidant was at a lower content. The FESEM images indicated that the morphology of the composites changed significantly with varying oxidant content. It could be seen from electrochemical tests that the supercapacitive performance of the nanocomposites was influenced markedly by their microstructure, the content, and the oxidation degree of PANI. When the oxidant content was high at 2 for the APS/aniline Mole ratio, the composite had high specific capacitance with 431.3 F/g but showed poor rate performance and charge/discharge stability. At a lower oxidant content with 1/6 of the APS/aniline mole ratio, the specific capacitance of the composite decreased to 216.6 F/g; nevertheless, it possessed superior rate performance with 82.8% capacitance retention at 10 A/g and excellent cyclability with just 11.2% capacitance loss after 2000 cycles.

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