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孔空间分隔增强的乙烷吸收和乙烷-乙烯的选择性分离。

Pore-Space-Partition-Enabled Exceptional Ethane Uptake and Ethane-Selective Ethane-Ethylene Separation.

机构信息

Department of Chemistry and Biochemistry , California State University , Long Beach , California 90840 , United States.

Department of Chemistry , University of California , Riverside , California 92521 , United States.

出版信息

J Am Chem Soc. 2020 Feb 5;142(5):2222-2227. doi: 10.1021/jacs.9b12924. Epub 2020 Jan 27.

DOI:10.1021/jacs.9b12924
PMID:31986024
Abstract

An ideal material for CH/CH separation would simultaneously have the highest CH uptake capacity and the highest CH/CH selectivity. But such material is elusive. A benchmark material for ethane-selective CH/CH separation is peroxo-functionalized MOF-74-Fe that exhibits the best known separation performance due to its high CH/CH selectivity (4.4), although its CH uptake capacity is moderate (74.3 cm/g). Here, we report a family of pore-space-partitioned crystalline porous materials (CPMs) with exceptional CH uptake capacity and CH/CH separation potential (i.e., CH recovered from the mixture) despite their moderate CH/CH selectivity (up to 1.75). The ethane uptake capacity as high as 166.8 cm/g at 1 atm and 298 K, more than twice that of peroxo-MOF-74-Fe, has been achieved even though the isosteric heat of adsorption (21.9-30.4 kJ/mol) for these CPMs is as low as about one-third of that for peroxo-MOF-74-Fe (66.8 kJ/mol). While the overall CH/CH separation potentials have not yet surpassed peroxo-MOF-74-Fe, these robust CPMs exhibit outstanding properties including high thermal stability (up to 450 °C) and aqueous stability, low regeneration energy, and a high degree of chemical and geometrical tunability within the same isoreticular framework.

摘要

对于 CH/CH 分离,理想的材料应该同时具有最高的 CH 吸附容量和最高的 CH/CH 选择性。但这样的材料很难找到。对于乙烷选择性 CH/CH 分离的基准材料是过氧功能化的 MOF-74-Fe,由于其具有较高的 CH/CH 选择性(4.4),因此具有最佳的分离性能,尽管其 CH 吸附容量适中(74.3 cm/g)。在这里,我们报告了一类具有卓越 CH 吸附容量和 CH/CH 分离潜力(即从混合物中回收的 CH)的孔空间分隔结晶多孔材料(CPM)家族,尽管其 CH/CH 选择性适中(最高可达 1.75)。在 1 atm 和 298 K 下,乙烷的吸附量高达 166.8 cm/g,是过氧 MOF-74-Fe 的两倍以上,尽管这些 CPM 的等吸附热(21.9-30.4 kJ/mol)仅为过氧 MOF-74-Fe 的约三分之一(66.8 kJ/mol)。虽然整体 CH/CH 分离潜力尚未超过过氧 MOF-74-Fe,但这些坚固的 CPM 具有出色的性能,包括高热稳定性(高达 450°C)和水稳定性、低再生能量以及在同一等孔框架内的高度化学和几何可调节性。

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