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One-Step Preparation of Oxygen/Fluorine Dual Functional MWCNTs with Good Water Dispersibility by the Initiation of Fluorine Gas

机译:通过引发氟气一步制备具有良好水分散性的氧/氟双功能MWCNT

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摘要

It is still a challenge to prepare water-dispersible carbon nanotubes which are proved to have great potential in numerous applications. In this present work, as low as 2% fluorine gas was used as initiator to prepare oxygen/fluorine dual functional MWCNTs (OF-MWCNTs) with good water dispersibility through a one-step method under oxygen atmosphere. The aromatic structure of OF-MWCNTs is reserved to some extent resulting in better electrical conductivity than pure fluorinated MWCNTs (F-MWCNTs). The amount of oxygen atoms and fluorine atoms (hereinafter referred. to as "O-content" and "F-content") of OF-MWCNTs is up to 8.8% and 7.5%. Fourier transform infrared spectroscopy (FTIR) manifests that - COOH is covalently bonded onto the surface of OF-MWCNTs. In addition, the OF-MWCNTs sample is pH sensitive) which further validates the successful introduction of - COOH. The successful covalent attachment of-COON onto MWCNTs dramatically improves the hydrophilia of MWCNTs which always present hydrophobic character. It is deduced that fluorine, creates reactive sites for oxygen, increases the oxygen content, and eventually results in the dispersibility of OF-MWCNTs in water. The corresponding hydrophilic OF-MWCNTs film shows. good performance for separating oil-in-water emulsions. Meanwhile, the good dispersibility of OF-MWCNTs in organic solvents also makes it possible to be applied in various composites.
机译:制备水分散性碳纳米管仍然是一项挑战,事实证明,水分散性碳纳米管在众多应用中具有巨大潜力。在本工作中,使用低至2%的氟气作为引发剂,通过一步法在氧气气氛下制备具有良好水分散性的氧/氟双功能MWCNT(OF-MWCNT)。 OF-MWCNT的芳族结构保留了一定程度,从而比纯氟化MWCNT(F-MWCNT)具有更好的导电性。 OF-MWCNT的氧原子和氟原子的量(以下称为“ O含量”和“ F含量”)高达8.8%和7.5%。傅立叶变换红外光谱(FTIR)表明-COOH共价键合到OF-MWCNT的表面上。此外,OF-MWCNTs样品对pH敏感),这进一步验证了-COOH的成功引入。 -COON在MWCNT上的成功共价连接显着改善了始终表现出疏水性的MWCNT的亲水性。可以推断出氟会产生氧的反应性位点,增加氧含量,并最终导致OF-MWCNT在水中的分散性。相应的亲水性OF-MWCNTs薄膜如图所示。分离水包油乳液的良好性能。同时,OF-MWCNT在有机溶剂中的良好分散性也使得它有可能被应用于各种复合材料中。

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