Shamshoom Christina, Fong Darryl, Li Kelvin, Kardelis Vladimir, Adronov Alex
Department of Chemistry and Chemical Biology, McMaster University, Hamilton, Ontario L8S 4L8, Canada.
ACS Omega. 2018 Oct 23;3(10):13935-13943. doi: 10.1021/acsomega.8b02091. eCollection 2018 Oct 31.
Control of single-walled carbon nanotube dispersion properties is of substantial interest to the scientific community. In this work, we sought to investigate the effect of a macrocycle, pillar[5]arene, on the dispersion properties of a polymer-nanotube complex. Pillar[5]arenes are a class of electron-rich macrocyclic hosts capable of forming inclusion complexes with electron-poor guests, such as alkyl nitriles. A hydroxyl-functionalized pillar[5]arene derivative was coupled to the alkyl bromide side chains of a polyfluorene, which was then used to coat the surface of single-walled carbon nanotubes. Noncovalent functionalization of carbon nanotubes with the macrocycle-containing conjugated polymer significantly enhanced nanotube solubility, resulting in dark and concentrated nanotube dispersions (600 μg mL), as evidenced by UV-vis-NIR spectroscopy and thermogravimetric analysis. Differentiation of semiconducting and metallic single-walled carbon nanotube species was analyzed by a combination of UV-vis-NIR, Raman, and fluorescence spectroscopy. Raman spectroscopy confirmed that the concentrated nanotube dispersion produced by the macrocycle-containing polymer was due to well-exfoliated nanotubes, rather than bundle formation. The polymer-nanotube dispersion was investigated using H NMR spectroscopy, and it was found that host-guest chemistry between pillar[5]arene and 1,6-dicyanohexane occurred in the presence of the polymer-nanotube complex. Utilizing the host-guest capability of pillar[5]arene, the polymer-nanotube complex was incorporated into a supramolecular organogel.
单壁碳纳米管分散特性的控制是科学界非常感兴趣的课题。在这项工作中,我们试图研究一种大环化合物柱[5]芳烃对聚合物 - 纳米管复合物分散特性的影响。柱[5]芳烃是一类富电子的大环主体,能够与缺电子客体(如烷基腈)形成包合物。一种羟基官能化的柱[5]芳烃衍生物与聚芴的烷基溴侧链偶联,然后用于包覆单壁碳纳米管的表面。用含大环的共轭聚合物对碳纳米管进行非共价功能化显著提高了纳米管的溶解度,通过紫外 - 可见 - 近红外光谱和热重分析证明,得到了深色且浓缩的纳米管分散液(600 μg/mL)。通过紫外 - 可见 - 近红外、拉曼和荧光光谱相结合的方法分析了半导体和金属单壁碳纳米管种类的差异。拉曼光谱证实,由含大环聚合物产生的浓缩纳米管分散液是由于纳米管充分剥离,而不是形成管束。使用核磁共振氢谱对聚合物 - 纳米管分散液进行了研究,发现在聚合物 - 纳米管复合物存在的情况下,柱[5]芳烃与1,6 - 二氰基己烷之间发生了主客体化学作用。利用柱[5]芳烃的主客体能力,将聚合物 - 纳米管复合物掺入超分子有机凝胶中。