State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Qingdao 266580, Shandong, P. R. China.
Nanoscale. 2012 Sep 7;4(17):5477-82. doi: 10.1039/c2nr31402a. Epub 2012 Aug 1.
The separation of CO₂ from a mixture of CO₂ and N₂ using a porous graphene membrane was investigated using molecular dynamics (MD) simulations. The effects of chemical functionalization of the graphene sheet and pore rim on the gas separation performance of porous graphene membranes were examined. It was found that chemical functionalization of the graphene sheet can increase the absorption ability of CO₂, while chemical functionalization of the pore rim can significantly improve the selectivity of CO₂ over N₂. The results show that the porous graphene membrane with all-N modified pore-16 exhibits a higher CO₂ selectivity over N₂ (∼11) due to the enhanced electrostatic interactions compared to the unmodified graphene membrane. This demonstrates the potential use of functionalized porous graphene as single-atom-thick membrane for CO₂ and N₂ separation. We provide an effective way to improve the gas separation performance of porous graphene membranes, which may be useful for designing new concept membranes for other gases.
使用分子动力学(MD)模拟研究了使用多孔石墨烯膜从 CO₂和 N₂的混合物中分离 CO₂。研究了石墨烯片的化学功能化和孔边缘对多孔石墨烯膜气体分离性能的影响。结果表明,石墨烯片的化学功能化可以增加 CO₂的吸收能力,而孔边缘的化学功能化可以显著提高 CO₂相对于 N₂的选择性。结果表明,由于与未改性石墨烯膜相比,增强的静电相互作用,所有-N 修饰的孔-16 的多孔石墨烯膜对 N₂(∼11)具有更高的 CO₂选择性。这表明功能化多孔石墨烯作为用于 CO₂和 N₂分离的单原子厚膜具有潜在用途。我们提供了一种有效提高多孔石墨烯膜气体分离性能的方法,这可能对设计用于其他气体的新概念膜有用。