Advanced Membrane Technology Research Centre (AMTEC), Universiti Teknologi Malaysia (UTM), 81310 Skudai, Johor, Malaysia.
J Colloid Interface Sci. 2012 Nov 15;386(1):80-7. doi: 10.1016/j.jcis.2012.07.033. Epub 2012 Jul 31.
Mixed matrix hollow fibers composed of multi-walled carbon nanotubes (MWCNTs) and polyetherimide (PEI) were fabricated. Pre-treatment of MWCNTs was carried out prior to the incorporation into the polymer matrix using a simple and feasible two stages approach that involved dry air oxidation and surfactant dispersion. The characterizations of the surface treated MWCNTs using TEM and Raman spectroscopy have evidenced the effectiveness of dry air oxidation in eliminating undesired amorphous carbon and metal catalyst while surfactant dispersion using Triton X100 has suppressed the agglomeration of MWCNTs. The resultant mixed matrix hollow fibers were applied for O(2)/N(2) pure gas separation. Interestingly, it was found that removal of disordered amorphous carbons and metal particles has allowed the hollow structures to be more accessible for the fast and smooth transport of gas molecules, hence resulted in noticeable improvement in the gas separation properties. The composite hollow fibers embedded with the surface modified MWCNTs showed increase in permeability as much as 60% while maintaining the selectivity of the O(2)/N(2) gas pair. This study highlights the necessity to establish an appropriate pre-treatment approach for MWCNTs in order to fully utilize the beneficial transport properties of this material in mixed matrix polymer nanocomposite for gas separation.
采用简单可行的两步法对多壁碳纳米管(MWCNTs)进行预处理,包括干空气氧化和表面活性剂分散,然后将其掺入聚合物基体中,制备了MWCNTs/聚醚酰亚胺(PEI)复合中空纤维。TEM 和拉曼光谱对表面处理后的 MWCNTs 的表征表明,干空气氧化有效地去除了不需要的无定形碳和金属催化剂,而使用 Triton X100 的表面活性剂分散则抑制了 MWCNTs 的团聚。所得的复合中空纤维用于 O(2)/N(2)纯气体分离。有趣的是,研究发现去除无序的无定形碳和金属颗粒使得中空结构更容易让气体分子快速、平稳地传输,从而显著提高了气体分离性能。表面改性的 MWCNTs 嵌入的复合中空纤维的渗透性增加了 60%,同时保持了 O(2)/N(2)气体对的选择性。本研究强调了在混合基质聚合物纳米复合材料中充分利用 MWCNTs 的有益传输性能进行气体分离时,需要建立适当的预处理方法。