Nanosystem Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki 305-8562, Japan.
Nat Commun. 2011;2:309. doi: 10.1038/ncomms1313.
Monostructured single-wall carbon nanotubes (SWCNTs) are important in both scientific research and electronic and biomedical applications; however, the bulk separation of SWCNTs into populations of single-chirality nanotubes remains challenging. Here we report a simple and effective method for the large-scale chirality separation of SWCNTs using a single-surfactant multicolumn gel chromatography method utilizing one surfactant and a series of vertically connected gel columns. This method is based on the structure-dependent interaction strength of SWCNTs with an allyl dextran-based gel. Overloading an SWCNT dispersion on the top column results in the adsorption sites of the column becoming fully occupied by the nanotubes that exhibit the strongest interaction with the gel. The unbound nanotubes flow through to the next column, and the nanotubes with the second strongest interaction with the gel are adsorbed in this stage. In this manner, 13 different (n, m) species were separated. Metallic SWCNTs were finally collected as unbound nanotubes because they exhibited the lowest interaction with the gel.
单壁碳纳米管(SWCNTs)是科学研究以及电子和生物医学应用中重要的材料;然而,将 SWCNTs 批量分离成单一手性的纳米管仍然具有挑战性。在这里,我们报告了一种使用单表面活性剂多柱凝胶色谱法,利用一种表面活性剂和一系列垂直连接的凝胶柱,对 SWCNTs 进行大规模手性分离的简单有效的方法。该方法基于 SWCNTs 与基于烯丙基葡聚糖的凝胶的结构依赖性相互作用强度。将 SWCNT 分散体加载到顶部柱子上,导致与凝胶相互作用最强的纳米管的柱子吸附位完全被占据。未结合的纳米管流过下一个柱子,而与凝胶具有第二强相互作用的纳米管在这个阶段被吸附。通过这种方式,分离出了 13 种不同的(n,m)种类。由于金属 SWCNTs 与凝胶的相互作用最低,因此它们最终作为未结合的纳米管被收集。