Moulton Simon E, Maugey Maryse, Poulin Philippe, Wallace Gordon G
ARC Centre of Excellence for Electromaterials Science, Intelligent Polymer Research Institute, University of Wollongong, New South Wales, Australia.
J Am Chem Soc. 2007 Aug 1;129(30):9452-7. doi: 10.1021/ja072160h. Epub 2007 Jul 10.
We report the spontaneous liquid crystal phase separation of nanotubes (single-walled carbon nanotubes, SWNTs) stabilized in aqueous biological (hyaluronic acid, HA) solutions. Sonication of SWNTs in solutions of HA produced well-dispersed single-phase isotropic dispersions which, over time, phase separated into dispersions containing birefringent nematic domains in equilibrium with an isotropic phase. The time required for phase separation to occur was shown to depend on the concentration of SWNT and HA, with the attractive interactions between the SWNT and HA shifting the onset of the phase separation toward lower concentration. This phase separation is accompanied by an increase in the dispersion viscosity with this increase qualitatively matching the degree of phase separation. The formation of ordered phases in biological media can offer wide opportunities for processing conducting biomaterials with aligned and oriented domains.
我们报道了在水性生物(透明质酸,HA)溶液中稳定存在的纳米管(单壁碳纳米管,SWNTs)的自发液晶相分离现象。在HA溶液中对SWNTs进行超声处理可产生分散良好的单相各向同性分散体,随着时间的推移,该分散体会相分离成含有与各向同性相处于平衡状态的双折射向列域的分散体。结果表明,发生相分离所需的时间取决于SWNT和HA的浓度,SWNT与HA之间的吸引相互作用使相分离的起始点向较低浓度偏移。这种相分离伴随着分散体粘度的增加,且这种增加在定性上与相分离的程度相匹配。在生物介质中形成有序相可为加工具有排列和取向域的导电生物材料提供广泛的机会。