College of Chemistry and Chemical Engineering, Southeast University (SEU), Nanjing, 211189, PR China.
Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences (CAS), Fuzhou, 350002, PR China.
J Hazard Mater. 2020 Feb 15;384:121476. doi: 10.1016/j.jhazmat.2019.121476. Epub 2019 Oct 17.
Fabrication of environmental-friendly, low-cost, and free-standing superhydrophobic nanofibrous membranes with additional functionalities such as self-cleaning and UV-shielding properties is highly demanded for oil-water separation. Herein, we describe the preparation of multifunctional superhydrophobic nanofibrous membrane by using a facile and novel nature-inspired method, i.e., plant polyphenol (tannic acid) metal complex is introduced to generate rough hierarchical structures on the surface of an electrospun polyimide (PI) nanofibrous membrane, followed by modification of poly (dimethylsiloxane) (PDMS). Taking an as-prepared tannic acid - Al-based superhydrophobic membrane as an example, it not only exhibits anti-impact, low-adhesive and self-cleaning functions, but also presents excellent performance in the separation of various oil-water mixtures. A high flux up to 6935 l m h with a separation efficiency of over 99% and the oil contents in water below 5 ppm is obtained even after repeating use for twenty separation cycles. Additionally, the membrane exhibits excellent UV-shielding property, attributing to the inherent UV-absorbing ability of tannic acid. Furthermore, the membrane also possesses additional properties including antibacterial activity, good biocompatibility, robust mechanical strength, and excellent resistance to various harsh conditions. These attractive properties of the as-prepared membrane make it a promising candidate for potential applications in industrial oil-contaminated water treatments and oil-water separation.
制备具有自清洁和防紫外线等附加功能的环保、低成本、自立式超疏水纳米纤维膜,对于油水分离具有重要意义。本文描述了一种简便新颖的仿生法制备多功能超疏水纳米纤维膜的方法,即在静电纺丝聚酰亚胺(PI)纳米纤维膜表面引入植物多酚(单宁酸)金属配合物,以产生粗糙的分层结构,然后对其进行聚二甲基硅氧烷(PDMS)改性。以制备的单宁酸-Al 基超疏水膜为例,它不仅具有抗冲击、低粘性和自清洁功能,而且在各种油水混合物的分离中表现出优异的性能。即使在重复使用二十次分离循环后,仍可获得高达 6935 l m h 的高通量和超过 99%的分离效率,以及水中油含量低于 5 ppm。此外,该膜还具有优异的防紫外线性能,这归因于单宁酸固有的紫外线吸收能力。此外,该膜还具有抗菌活性、良好的生物相容性、较强的机械强度以及对各种恶劣条件的优异耐受性等附加性能。所制备的膜具有这些有吸引力的特性,使其成为在工业含油污水治理和油水分离方面具有应用前景的候选材料。