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Moderately oxidized graphene–carbon nanotubes hybrid for high performance capacitive deionization

机译:适度氧化石墨烯 - 碳纳米管杂交机,用于高性能电容去离子

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Capacitive deionization (CDI) is an emerging technology offering a green and efficient route to obtain clean water. According to its basic working mechanism, the covalent bond attached three-dimensional graphene/carbon nanotubes hybrid (G–CNTs) can be considered a promising material for CDI performance. In this paper, we present a novel strategy to improve wettability through moderate oxidation treatment for G–CNTs-based CDI electrodes because the poor wettability of G–CNTs will limit electrosorption performance. The results showed that the activated G–CNTs-1 h exhibited good cycling stability performance and high electrosorption capacity of 8.45 mg g ~(?1) when the initial concentration of NaCl was 500 mg L ~(?1) , more than twice that of the pristine G–CNTs (3.95 mg g ~(?1) ). This work may provide a new insight into the future pretreatment of graphene or carbon nanotube based CDI electrode materials.
机译:电容去离子(CDI)是一种新兴技术,提供绿色和有效的途径来获得清水。根据其基本工作机理,附着的三维石墨烯/碳纳米管杂交(G-CNT)的共价键可被认为是CDI性能的有希望的材料。在本文中,我们提出了一种新的策略来改善基于G-CNTS的CDI电极的中等氧化处理,因为G-CNT的润湿性差的较差将限制电吸收性能。结果表明,当NaCl的初始浓度为500mg l〜(α1)时,活化的G-CNT-1 H表现出良好的循环稳定性和8.45mg g〜(α1)的高电吸收能力。原始G-CNT(3.95mg g〜(α1))。这项工作可以对石墨烯或基于碳纳米管的CDI电极材料的未来预处理提供新的洞察。

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