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Enhanced adsorption selectivity of hydrogen/methane mixtures in metal-organic frameworks with interpenetration: A molecular simulation study

机译:互穿增强金属-有机骨架中氢/甲烷混合物的吸附选择性:分子模拟研究

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摘要

In this work a systematic molecular simulation study was performed to study the effect of interpenetration on gas mixture separation in metal−organic frameworks (MOFs). To do this, three pairs of isoreticular MOFs (IRMOFs) with and without interpenetration were adopted to compare their adsorption separation selectivity for CH4/H2 mixtures at room temperature. The results show that methane selectivity is greatly enhanced in the interpenetrated IRMOFs compared with their noninterpenetrated counterparts, due to the formation of additional small pores and adsorption sites by the interpenetration of frameworks. Furthermore, this work shows methane selectivity behavior is more complex in the former and selectivity differs largely in the different areas of the pores, attributed to the existence of various small pores of different sizes. In addition, the present work shows the ideal adsorbed solution theory is likely to be applicable to interpenetrated MOFs with complex structures.
机译:在这项工作中,进行了系统的分子模拟研究,以研究互穿对金属有机框架(MOF)中气体混合物分离的影响。为此,采用三对互穿和不互穿的等规MOF(IRMOF),以比较它们在室温下对CH4 / H2混合物的吸附分离选择性。结果表明,与互穿的IRMOF相比,互穿的IRMOF中甲烷的选择性大大提高,这是由于骨架互穿形成了额外的小孔和吸附位。此外,这项工作表明甲烷的选择性行为在前者中更为复杂,并且在孔隙的不同区域选择性差异很大,这归因于存在各种大小不同的小孔隙。此外,目前的工作表明理想的吸附溶液理论很可能适用于具有复杂结构的互穿MOF。

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