School of Materials , University of Manchester , Oxford Road , Manchester , M13 9PL , United Kingdom.
Manchester Institute of Biotechnology , University of Manchester , 131 Princess Street , Manchester , M1 7DN , United Kingdom.
ACS Appl Mater Interfaces. 2018 May 9;10(18):16140-16147. doi: 10.1021/acsami.8b03591. Epub 2018 Apr 27.
Robust, readily scalable, high-flux graphene oxide (GO) mixed matrix composite membranes were developed for organic solvent nanofiltration. Hydroxylated polybenzimidazole was synthesized by N-benzylation of polybenzimidazole with 4-(chloromethyl)benzyl alcohol, which was confirmed by FTIR and NMR spectroscopy. Flat-sheet composite membranes comprising of polybenzimidazoles and 1 or 2 wt % GO were fabricated via conventional blade coating and phase inversion. Subsequently, GO was covalently anchored to the hydroxyl groups of the polymer using a diisocyanate cross-linking agent. The even distribution of GO in the membranes was mapped by visible-light microscopy. Hydroxylation and incorporation of GO in the polymer matrix increased the permeance up to 45.2 ± 1.6 L m h bar in acetone, nearly 5 times higher than the unmodified benchmark membrane. The enhancement in permeance from the addition of GO did not compromise the solute rejection. The composite membranes were found to be tight in seven organic solvents, having molecular weight cut-offs (MWCO) as low as 140 g mol. Permeance increased with increasing solvent polarity, while rejection of a 420 g mol pharmaceutical remained over 93%. The covalent anchoring resulted in robust composite membranes that maintained constant performance over 14 days in a continuous cross-flow configuration.
开发了稳健、易于扩展、高通量的氧化石墨烯(GO)混合基质复合膜,用于有机溶剂纳滤。通过 4-(氯甲基)苄醇与聚酰亚胺的 N-苄基化合成了羟基化聚酰亚胺,通过傅里叶变换红外光谱和核磁共振波谱得到了证实。通过常规刮刀涂布和相转化法制备了包含聚酰亚胺和 1 或 2wt%GO 的平板复合膜。随后,使用二异氰酸酯交联剂将 GO 共价接枝到聚合物的羟基上。通过可见光显微镜对 GO 在膜中的均匀分布进行了映射。羟基化和 GO 的掺入增加了聚合物基质的透过率,在丙酮中的透过率高达 45.2±1.6L m h bar,比未改性的基准膜高近 5 倍。添加 GO 所带来的透过率的提高并没有影响溶质的截留率。在七种有机溶剂中,复合膜的孔径均较小,分子量截止值(MWCO)低至 140gmol。透过率随溶剂极性的增加而增加,而 420gmol 的药物的截留率仍保持在 93%以上。共价接枝得到的复合膜在连续错流配置中经过 14 天仍保持恒定的性能。