Ying Wen, Han Bowen, Lin Hanqing, Chen Danke, Peng Xinsheng
State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou 310027, People's Republic of China.
Nanotechnology. 2019 Sep 20;30(38):385705. doi: 10.1088/1361-6528/ab2b10. Epub 2019 Jun 19.
Mica has attracted great attention due to its excellent photoelectric property and it is mainly used in the optics and electronics area. High-quality mica nanosheets exfoliated from natural ground mica have been successfully achieved recently. It improves the application potential of mica as well as extending the application field to gas separation as a new two-dimensional (2D) material. Herein, we firstly constructed a mica membrane by regularly stacking mica nanosheets and then immobilized ionic liquid (IL) into its 2D channels to separate CO from H, CH and N. Gas diffusion is changed from Knudsen diffusion in the mica membrane to a solution-diffusion mechanism after inserting IL. The resultant membrane, the mica supported IL membrane (M-SILM), has about 80 GPU for CO permeance, and selectivity for CO/H, CO/CH and CO/N of 7.7, 28.6 and 87, respectively. It is the first time a mica nanosheet to construct a gas separation membrane has been used. As a cheap raw material with facile treating, mica shows promising potential for gas separation and competitiveness among 2D material supported IL membranes.
云母因其优异的光电性能而备受关注,主要应用于光学和电子领域。近年来,已成功实现从天然磨碎云母中剥离出高质量的云母纳米片。这不仅提高了云母的应用潜力,还将其应用领域扩展到作为一种新型二维(2D)材料的气体分离。在此,我们首先通过将云母纳米片规则堆叠构建云母膜,然后将离子液体(IL)固定在其二维通道中以分离CO与H₂、CH₄和N₂。插入IL后,气体扩散从云母膜中的克努森扩散转变为溶液扩散机制。所得的膜,即云母负载离子液体膜(M-SILM),对CO的渗透率约为80 GPU,对CO/H₂、CO/CH₄和CO/N₂的选择性分别为7.7、28.6和87。这是首次使用云母纳米片构建气体分离膜。作为一种处理简便的廉价原材料,云母在气体分离方面显示出广阔的应用潜力,在二维材料负载离子液体膜中具有竞争力。