School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0100, USA.
Phys Chem Chem Phys. 2009 Dec 28;11(48):11389-94. doi: 10.1039/b918254n. Epub 2009 Oct 29.
The identification of membrane materials with high selectivity for CO(2)/CH(4) mixtures could revolutionize this industrially important separation. We predict using computational methods that a metal organic framework (MOF), Cu(hfipbb)(H(2)hfipbb)(0.5), has unprecedented selectivity for membrane-based separation of CO(2)/CH(4) mixtures. Our calculations combine molecular dynamics, transition state theory, and plane wave DFT calculations to assess the importance of framework flexibility in the MOF during molecular diffusion. This combination of methods should also make it possible to identify other MOFs with attractive properties for kinetic separations.
对 CO(2)/CH(4)混合物具有高选择性的膜材料的鉴定可能会彻底改变这种工业上重要的分离方法。我们使用计算方法预测,一种金属有机骨架(MOF),Cu(hfipbb)(H(2)hfipbb)(0.5),对基于膜的 CO(2)/CH(4)混合物分离具有前所未有的选择性。我们的计算结合了分子动力学、过渡态理论和平面波 DFT 计算,以评估在分子扩散过程中 MOF 中框架灵活性的重要性。这种方法的结合也应该能够识别其他对于动力学分离具有吸引力的 MOFs。