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Flexible Aliphatic-Aromatic Polyamide Thin Film Composite Membrane for Highly Efficient Organic Solvent Nanofiltration

机译:柔性脂族芳族聚酰胺薄膜复合膜,用于高效有机溶剂纳滤

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摘要

Membranes with strong solvent resistance and efficient molecular separation are desirable in industries. Especially the fractionation of organic molecules in harsh organic solvents still remains a challenge in the pharmaceutical industry. Here, we report a flexible aliphatic-aromatic polyamide thin-film composite (TFC) membrane with high stability, permeability, and precise selectivity in mild solvents as well as in polar aprotic solvents. This composite organic solvent nanofiltration (OSN) membrane integrates a cross-linked sub-100 nm nanofilm and a nanofibrous sublayer. The flexible aliphatic chains in the polyamide network render the selective layer with a tunable free volume in different organic solvents. Consistent with the solvent swelling degrees, the membrane shows a cutoff in a sequence of dimethyl sulfoxide (DMSO, MWCO: 814 g mol(-1)) > N,N-dimethylformamide (DMF, MWCO: 648 g mol(-1)) > methanol (MWCO: 506 g mol(-1), with DMF activation) > methanol (MWCO: 327 g mol(-1)). The membrane can precisely fractionate two molecules with difference in molar mass of <166 g mol(-1) in a polar aprotic solvent, DMSO. Long-term filtration tests in DMF further demonstrate that the TFC membrane has an outstanding chemical stability and molecular selectivity in aggressive organic media. This work provides an efficient way to control OSN membrane separations by introducing flexible alkane chains into the rigid polymer structure followed by solvent activation. Additionally, the high permeance and excellent separation efficiency of the TFC membrane highlight its great potential for molecular separation in pharmaceutical and chemical industries.
机译:具有强耐溶剂性和有效分子分离的膜是可取的。特别是苛刻的有机溶剂中有机分子的分馏仍然是制药行业的挑战。在此,我们在温和溶剂中具有高稳定性,渗透性和精确选择性的柔性脂族芳族聚酰胺薄膜复合材料(TFC)膜以及极化溶剂的精确选择性以及极性非质子溶剂。该复合有机溶剂纳滤(OSN)膜(OSN)膜整合了交联的亚100nm纳米丝和纳米纤维子层。聚酰胺网络中的柔性脂族链将选择性层与不同的有机溶剂中的可调自由体积呈现。与溶剂溶胀度一致,膜显示在二甲基亚砜(DMSO,MWCO:814g Mol(-1))> N,N-二甲基甲酰胺(DMF,MWCO:648g Mol(-1)中的截止值>甲醇(MWCO:506g mol(-1),具有DMF激活)>甲醇(MWCO:327g mol(-1))。膜可以在极性非质子溶剂,DMSO中精确地分馏出两种具有摩尔质量的摩尔质量差异的分子<166g mol(-1)。 DMF中的长期过滤试验进一步证明TFC膜具有优异的化学稳定性和侵蚀性有机介质中的分子选择性。该工作通过将柔性烷烃链引入刚性聚合物结构之后,通过将柔性烷烃链引入耐溶剂活化来控制OSN膜分离的有效方法。此外,TFC膜的高渗透率和优异的分离效率强调了其在药物和化学工业中的分子分离的巨大潜力。

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