School of Science , Xihua University , Jinzhou Road , Chengdu 610039 , P. R. China.
Institute for Frontier Materials , Deakin University , Geelong, Melbourne 3220 , Australia.
ACS Appl Mater Interfaces. 2019 Sep 18;11(37):34487-34496. doi: 10.1021/acsami.9b12855. Epub 2019 Sep 9.
Filtration membranes, with good antifouling performance and robust solvent resistance (e.g., organic solvents or highly acidic/alkaline/saline solvents), that can effectively purify complex polluted water systems are especially demanded in practice but present a challenge to be conquered. Herein, a simple method has been demonstrated to address the obstacles, applying the stabilized polyacrylonitrile (SPAN) nanofiber/β-FeOOH nanorod composite membrane as a model. In this work, simply stabilizing PAN nanofibers in air can achieve robust solvent resistance against organic solvents and strong inorganic acidic/alkaline/saline solutions. Hydrophilic β-FeOOH nanorods were anchored onto SPAN nanofibers of our electrospun membrane and achieve superhydrophilicity (0°)/underwater superoleophobicity (>155°) for various oils. More importantly, the SPAN/β-FeOOH nanofibrous membrane exhibits robust mechanical strength (274 MPa of Young's modulus), excellent chemical stability, fast separation flux (2532-10146 L m h), and satisfying removal ratio (>98.2%) against insoluble oils and soluble cationic dyes. In addition, good photocatalytic activity against organic pollutants provides our membranes with excellent flux restorability and a long-term use capacity. These outstanding performances endow our membrane with a great potential application in purifying polluted aquatic systems in worldly harsh conditions.
过滤膜具有良好的抗污染性能和较强的耐溶剂性(如有机溶剂或高酸性/碱性/盐性溶剂),能够有效净化复杂的污染水系统,在实际应用中需求量很大,但却是一个亟待解决的难题。在此,我们展示了一种简单的方法,以稳定的聚丙烯腈(SPAN)纳米纤维/β-FeOOH 纳米棒复合膜为例。在这项工作中,只需将 PAN 纳米纤维在空气中稳定化,就可以实现对有机溶剂和强无机酸/碱/盐溶液的强耐溶剂性。亲水性的β-FeOOH 纳米棒被锚定在我们电纺膜的 SPAN 纳米纤维上,实现了对各种油的超亲水(0°)/水下超疏油性(>155°)。更重要的是,SPAN/β-FeOOH 纳米纤维膜具有较强的机械强度(274 MPa 的杨氏模量)、优异的化学稳定性、较快的分离通量(2532-10146 L m h)以及对不溶性油和可溶性阳离子染料的高去除率(>98.2%)。此外,对有机污染物具有良好的光催化活性,使我们的膜具有优异的通量恢复能力和长期使用能力。这些优异的性能使我们的膜在净化世界范围内恶劣条件下的污染水系统方面具有巨大的潜在应用价值。