Li Han, Zheng Ming, Fagan Jeffrey A
Department of Mechanical and Materials Engineering, University of Turku, Turku FI-20014, Finland.
Turku Collegium for Science, Medicine and Technology, University of Turku, Turku FI-20014, Finland.
ACS Nano. 2025 Apr 15;19(14):14137-14149. doi: 10.1021/acsnano.5c00025. Epub 2025 Apr 3.
Separation of single-chirality single-wall carbon nanotubes (SWCNTs) and their enantiomers holds significant potential for materials science and various applications but challenges in scalability and precision persist. In this study, we introduce a systematic approach to identify separation conditions for metallic SWCNTs in aqueous two-phase extraction (ATPE), precisely identifying improved conditions for isolating multiple armchair and chiral (,) species. We quantify these conditions by determining partition coefficient change condition (PCCC) values for both binary and ternary surfactant combinations. This information enables optimization for efficient separation of high-purity armchair nanotubes such as (6,6), (7,7), (8,8) and (9,9), and for isolation of enantiomeric nonarmchair nanotubes, including challenging metallic species such as the (8,5), (7,4), (9,3), (10,4) and (10,7). Lastly, separated single (,) populations are reseparated in ATPE at precise steps in both binary and ternary surfactant mixtures to resolve their enantiomers, extracting information on the underlying mechanism of metallic SWCNT ATPE and highlighting the utility of sodium cholate for achieving single enantiomer level separations.
单一手性单壁碳纳米管(SWCNTs)及其对映体的分离在材料科学和各种应用中具有巨大潜力,但在可扩展性和精度方面仍存在挑战。在本研究中,我们引入了一种系统方法来确定水相两相萃取(ATPE)中金属性SWCNTs的分离条件,精确识别出分离多种扶手椅型和手性(,)型物种的改进条件。我们通过确定二元和三元表面活性剂组合的分配系数变化条件(PCCC)值来量化这些条件。这些信息有助于优化高效分离高纯度扶手椅型纳米管,如(6,6)、(7,7)、(8,8)和(9,9),以及分离对映体非扶手椅型纳米管,包括具有挑战性的金属性物种,如(8,5)、(7,4)、(9,3)、(10,4)和(10,7)。最后,在二元和三元表面活性剂混合物的精确步骤中,通过ATPE对分离出的单一(,)群体进行再分离以解析其对映体,提取关于金属性SWCNT ATPE潜在机制的信息,并突出胆酸钠在实现单一对映体水平分离方面的效用。