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Key role of the linker in pyrene-linker-carboxylate surfactants for the efficient aqueous dispersion of multiwalled carbon nanotubes

机译:接头在pyr-接头-羧酸盐表面活性剂中对多壁碳纳米管有效水分散体的关键作用

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摘要

This study establishes that the structure of the linker group between the hydrophobic and hydrophilic units in the new surfactants 1-13 plays an important role in the dispersibility of multiwalled carbon nanotubes (MWNTs) in water. The systematic variation of the linker group in amphiphilic surfactants for carbon nanotubes has not been previously investigated. In the present series, the hydrophobic unit is derived from pyrene, the hydrophilic unit comprises 1-9 carboxylate groups and the linker is based on amide or ether moieties. The resulting MWNT-surfactant dispersions, up to concentrations and efficiencies of ca. 160 mg L-1 and almost 50%, respectively, have been characterised by UV-vis absorption spectroscopy studies which provide detailed structure-property relationships, while transmission electron microscopy (TEM) was used to confirm that the MWNTs were well dispersed. For many of the new surfactants enhanced dispersion efficiency is observed compared to commercial surfactants. The efficiency of the dispersion is affected by the presence, functionality and particularly the length of the linker, and also the number of terminal carboxylate units. The marked effect of sodium, potassium and calcium cations on the dispersion behaviour is explained by interactions between the metal ions and the surfactant and an ionic screening mechanism. We also demonstrate that the dispersibility of the MWNT-surfactant dispersions can be reversibly switched 'off' and 'on' by addition of acid and base, respectively. The experimental results are supported by theoretical calculations of solvation energy DES. This study represents a significant advance in the design of multi-functional surfactants for efficient aqueous dispersions of carbon-based materials.
机译:这项研究表明,新型表面活性剂1-13中疏水和亲水单元之间的连接基团的结构在水中多壁碳纳米管(MWNTs)的分散性中起着重要作用。碳纳米管的两亲性表面活性剂中连接基团的系统变化先前尚未研究过。在本系列中,疏水单元衍生自pyr,亲水单元包含1-9个羧酸根,连接基基于酰胺或醚部分。所得的MWNT-表面活性剂分散液,浓度和效率最高可达紫外可见吸收光谱研究已分别表征了160 mg L-1和几乎50%的L-1,该研究提供了详细的结构-性质关系,而透射电子显微镜(TEM)用于确认MWNT分散良好。与市售表面活性剂相比,许多新型表面活性剂的分散效率得到提高。分散体的效率受连接基团的存在,官能度,尤其是连接基团的长度,以及末端羧酸酯单元的数量的影响。钠,钾和钙阳离子对分散行为的显着影响可以通过金属离子与表面活性剂之间的相互作用以及离子筛选机制来解释。我们还证明,通过分别添加酸和碱,可将MWNT表面活性剂分散体的分散性可逆地切换为“关闭”和“开启”。实验结果得到溶剂化能DES的理论计算的支持。这项研究代表了用于碳基材料有效水分散体的多功能表面活性剂设计的重大进展。

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