Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.
Nano Lett. 2021 Mar 24;21(6):2429-2435. doi: 10.1021/acs.nanolett.0c04512. Epub 2021 Mar 9.
Electrically conductive membranes are a promising avenue to reduce water treatment costs due to their ability to minimize the detrimental impact of fouling, to degrade contaminants, and to provide other additional benefits during filtration. Here, we demonstrate the facile and low-cost fabrication of electrically conductive membranes using laser-reduced graphene oxide (GO). In this method, GO is filtered onto a poly(ether sulfone) membrane support before being pyrolyzed via laser into a conductive film. Laser-reduced GO composite membranes are shown to be equally as permeable to water as the underlying membrane support and possess sheet resistances as low as 209 Ω/□. Application of the laser-reduced GO membranes is demonstrated through greater than 97% removal of a surrogate water contaminant, 25 μM methyl orange dye, with an 8 V applied potential. Furthermore, we show that laser-reduced GO membranes can be further tuned with the addition of -phenylenediamine binding molecules to decrease the sheet resistance to 54 Ω/□.
导电膜因其能够最小化结垢的不利影响、降解污染物以及在过滤过程中提供其他额外益处,是降低水处理成本的一个很有前途的途径。在这里,我们展示了一种使用激光还原氧化石墨烯 (GO) 制备导电膜的简单且低成本的方法。在该方法中,GO 先被过滤到聚醚砜膜支撑体上,然后再通过激光热解成导电膜。激光还原 GO 复合膜与基础膜支撑体具有相同的水渗透性,其面电阻低至 209 Ω/□。通过施加 8 V 外加电势,证明了激光还原 GO 膜可有效去除 25 μM 甲基橙染料等替代水污染物,去除率大于 97%。此外,我们还表明,通过添加 -苯二胺结合分子,激光还原 GO 膜的面电阻可进一步降低至 54 Ω/□。