State Key Laboratory of Gansu Advanced Non-ferrous Metal Materials, Key Laboratory of Non-ferrous Metal Alloys and Processing, Ministry of Education, College of Petrochemical Technology, Lanzhou University of Technology, Langongping Road 287, Lanzhou 730050 (PR China), Fax: (+86) 931-2973305.
ChemSusChem. 2013 Dec;6(12):2377-81. doi: 10.1002/cssc.201300319. Epub 2013 Aug 8.
Superwetting membranes or porous absorbent materials have recently attracted considerable interest from both commercial and academic communities due to their excellent performance for separation or selective absorption of organic compounds and oils from water, which shows great potential for addressing environmental issues. Herein, the first example of engineering a commercially available stainless-steel grid based on the assembly of graphene for the fabrication of superwetting mesh films (SMFs) is reported. An excellent surface wettability of the SMFs, which exhibit a unique adhesion force to liquids, is observed; this makes it possible to transfer small quantities of liquid samples to perform microsample analysis. A three-dimensional SMF shows unprecedented performance in the separation, transportation, and selective absorption of organic compounds or oils from water. The performance is considerably improved in comparison to traditional separation/absorption technologies and may useful for a wide range of applications such as purification, water treatment, or oil-spill cleanup.
超润湿膜或多孔吸收材料由于其在从水中分离或选择性吸收有机化合物和油方面的优异性能,最近引起了商业和学术界的极大兴趣,这为解决环境问题展示了巨大的潜力。本文首次报道了一种基于商业可用不锈钢网格的组装石墨烯工程,用于制造超润湿网膜(SMF)。观察到 SMF 具有优异的表面润湿性,对液体表现出独特的粘附力,这使得可以转移少量液体样品以进行微样本分析。三维 SMF 在从水中分离、输送和选择性吸收有机化合物或油方面表现出前所未有的性能。与传统的分离/吸收技术相比,性能得到了显著提高,可能对广泛的应用有用,如净化、水处理或溢油清理。