Department of Physical, Chemical, and Natural Systems , Universidad Pablo de Olavide , Ctra. Utrera km. 1 , ES-41013 Seville , Spain.
Center for Molecular Modeling (CMM) , Ghent University (Member of the QCMM Ghent-Brussels Alliance), Technologiepark 903 , B9000 Ghent , Belgium.
ACS Appl Mater Interfaces. 2018 Sep 5;10(35):29694-29704. doi: 10.1021/acsami.8b11842. Epub 2018 Aug 23.
We study the adsorption performance of metal-organic frameworks (MOFs) impregnated of ionic liquids (ILs). To this aim we calculated adsorption and diffusion of light gases (CO, CH, N) and their mixtures in hybrid composites using molecular simulations. The hybrid composites consist of 1-ethyl-3-methylimidazolium thiocyanate impregnated in IRMOF-1, HMOF-1, MIL-47, and MOF-1. We found that the increase of the amount of IL enhances the adsorption selectivity in favor of carbon dioxide for the mixtures CO/CH and CO/N and in favor of methane in the mixture CH/N. We also provide detailed analysis of the microscopic organization of ILs and adsorbates via radial distribution functions and average occupation profiles and study the impact of the ILs in the diffusion of the adsorbates inside the pores of the MOFs. Based on our findings, we discuss the advantages of using IL/MOF composites for gas adsorption to increase the adsorption of gases and to control the pore sizes of the structures to foster selective adsorption.
我们研究了负载离子液体(ILs)的金属有机骨架(MOFs)的吸附性能。为此,我们使用分子模拟计算了轻气体(CO、CH、N)及其混合物在混合复合材料中的吸附和扩散。混合复合材料由 1-乙基-3-甲基咪唑鎓硫氰酸酯负载在 IRMOF-1、HMOF-1、MIL-47 和 MOF-1 中。我们发现,IL 含量的增加有利于提高 CO/CH 和 CO/N 混合物中二氧化碳的吸附选择性,有利于 CH/N 混合物中甲烷的吸附选择性。我们还通过径向分布函数和平均占据分布曲线对 IL 和吸附质的微观组织进行了详细分析,并研究了 IL 对 MOFs 孔内吸附质扩散的影响。基于我们的研究结果,我们讨论了使用 IL/MOF 复合材料进行气体吸附的优势,以提高气体的吸附量,并控制结构的孔径,从而促进选择性吸附。