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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Preparation of MWCNTs-Graphene-Cellulose Fiber with Ionic Liquids
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Preparation of MWCNTs-Graphene-Cellulose Fiber with Ionic Liquids

机译:具有离子液体的MWCNT-石墨烯 - 纤维素纤维的制备

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摘要

The conductive multiwalled carbon nanotubes (MWCNTs)-graphene sheets (rGOs)-cellulose fiber was prepared with an eco-friendly wet-spinning method in which ionic liquid (IL) was used as both green solvent and dispersant. It was found that the selected IL 1-ethyl-3- methylimidazolium diethyl phosphate (EmimDep) shows remarkable capacities for dissolving cellulose and dispersing MWCNTs, and the synergistic effect of MWCNTs, rGOs, and cellulose results in a high electrical conductivity of 1195 S/m of MWCNTs-rGOs-cellulose fibers. Macropores and the double-layer structure of MWCNTs and rGOs can be observed by SEM in the studied fibers, and the number of macropores decreased with increasing rGOs amount, which is consistent with the result of the specific surface area. In addition, the prepared MWCNTs-rGOs-cellulose fibers present a nearly perfect electrical double-layer structure. The MWCNTs-rGOs-cellulose fiber with a mass ratio of 2:3:1 shows the best performance as the electrode candidate, with an electrical conductivity of 1195 S/m, specific capacitance of 597 mF/cm~2, and specific surface area of 91 m~2/g. Furthermore, the results from the molecular dynamics (MD) simulation evidenced that EmimDep can disperse CNTs effectively at 363.15 K, 1 atm compared to rGOs; the synergy effect of CNT and rGO exhibit great potential to enhance the dispersion than each individual component.
机译:用环保湿纺丝制备导电多壁碳纳米管(MWCNTS)型纤维(RGOS) - 纤维纤维,其中使用离子液体(IL)作为绿色溶剂和分散剂。结果发现,所选择的IL 1-乙基-3-甲基咪唑鎓磷酸二乙基磷酸酯(EMIMDEP)表示溶解纤维素和分散MWCNT的显着能力,以及MWCNT,RGOS和纤维素的协同作用导致1195 s的高电导率为1195 s / MWCNTS-RGOS-纤维素纤维的M.通过研究的纤维中的SEM可以观察MWCNT和RGOS的MAMORPORE和双层结构,并且随着RGOS量的增加,MACOPORE的数量降低,这与比表面积的结果一致。此外,制备的MWCNTS-RGOS-纤维素纤维存在近乎完美的电双层结构。质量比为2:3:1的MWCNTS-RGOS-纤维素纤维显示了作为电极候选的最佳性能,电导率为1195 s / m,特定电容为597mf / cm〜2,具体的表面积91米〜2 / g。此外,分子动力学(MD)模拟的结果证明了EMIMDEP可以在363.15K,1个ATM上有效地分散CNT,而与RGOS相比; CNT和RGO的协同作用表现出巨大的潜力来增强比每个单独的组分的分散体。

著录项

  • 来源
  • 作者

    Yanrong Liu; Yanlei Wang; Yi Nie;

  • 作者单位

    CAS Key Laboratory of Green Process and Engineering Beijing Key Laboratory of Ionic Liquids Clean Process State Key Laboratory of Multiphase Complex Systems Institute of Process Engineering Chinese Academy of Sciences 1 North Second Street Zhongguan;

    CAS Key Laboratory of Green Process and Engineering Beijing Key Laboratory of Ionic Liquids Clean Process State Key Laboratory of Multiphase Complex Systems Institute of Process Engineering Chinese Academy of Sciences 1 North Second Street Zhongguan;

    CAS Key Laboratory of Green Process and Engineering Beijing Key Laboratory of Ionic Liquids Clean Process State Key Laboratory of Multiphase Complex Systems Institute of Process Engineering Chinese Academy of Sciences 1 North Second Street Zhongguan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Conductive cellulose fiber; Carbon nanotubes; Graphene; Ionic liquids; Wet spinning; Molecular dynamic simulation;

    机译:导电纤维素纤维;碳纳米管;石墨烯;离子液体;湿纺;分子动态模拟;

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