选择性
丙烷
金属有机骨架
化学
吸附
动能
动力学
金属
物理化学
无机化学
热力学
催化作用
有机化学
量子力学
物理
作者
Yu Wang,Ning‐Yu Huang,Xue‐Wen Zhang,Hai He,Rui‐Kang Huang,Zi‐Ming Ye,Yang Li,Dong‐Dong Zhou,Pei‐Qin Liao,Xiao‐Ming Chen,Jie‐Peng Zhang
标识
DOI:10.1002/anie.201902209
摘要
Abstract Efficient adsorptive separation of propylene/propane (C 3 H 6 /C 3 H 8 ) is highly desired and challenging. Known strategies focus on either the thermodynamic or the kinetic mechanism. Here, we report an interesting reactivity of a metal–organic framework that improves thermodynamic and kinetic adsorption selectivity simultaneously. When the metal–organic framework is heated under oxygen flow, half of the soft methylene bridges of the organic ligands are selectively oxidized to form the more polar and rigid carbonyl bridges. Mixture breakthrough experiments showed drastic increase of C 3 H 6 /C 3 H 8 selectivity from 1.5 to 15. For comparison, the C 3 H 6 /C 3 H 8 selectivities of the best‐performing metal–organic frameworks Co‐MOF‐74 and KAUST‐7 were experimentally determined to be 6.5 and 12, respectively. Gas adsorption isotherms/kinetics, single‐crystal X‐ray diffraction, and computational simulations revealed that the oxidation gives additional guest recognition sites, which improve thermodynamic selectivity, and reduces the framework flexibility, which generate kinetic selectivity.
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