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控制互穿阴离子柱撑超微孔材料的孔形状和大小可以实现 CO 的分子筛分离与超高吸附容量的结合。

Controlling Pore Shape and Size of Interpenetrated Anion-Pillared Ultramicroporous Materials Enables Molecular Sieving of CO Combined with Ultrahigh Uptake Capacity.

机构信息

Department of Chemistry , University of Texas at San Antonio , One UTSA Circle , San Antonio , Texas 78249-0698 , United States.

NIST Center for Neutron Research , National Institute of Standards and Technology , Gaithersburg , Maryland 20899-6102 , United States.

出版信息

ACS Appl Mater Interfaces. 2018 May 16;10(19):16628-16635. doi: 10.1021/acsami.8b03358. Epub 2018 May 1.

DOI:10.1021/acsami.8b03358
PMID:29671578
Abstract

The separation of carbon dioxide (CO) from hydrocarbons is a critical process for the production of clean energy and high-purity chemicals. Adsorption based on molecular sieving is an energy-saving separation process; however, most of molecular sieves with narrow and straight pore channels exhibit low CO uptake capacity. Here, we report that a twofold interpenetrated copper coordination network with a consecutive pocket-like pore structure, namely, SIFSIX-14-Cu-i (SIFSIX = hexafluorosilicate, 14 = 4,4'-azopyridine, i = interpenetrated) is a remarkable CO/CH molecular sieving adsorbent which completely blocks the larger CH molecule with unprecedented selectivity, whereas it has excellent CO uptake (172.7 cm/cm) under the ambient condition. The exceptional separation performance of SIFSIX-14-Cu-i is attributed to its unique pore shape and functional pore surface, which combine a contracted pore window (3.4 Å) and a relatively large pore cavity decorated with high density of inorganic anions. Dispersion-corrected density functional theory calculation and neutron powder diffraction were performed to understand the CO binding sites. The practical feasibility of SIFSIX-14-Cu-i for CO/CH mixtures separation was validated by experimental breakthrough tests. This study not only demonstrates the great potential of SIFSIX-14-Cu-i for CO separation but also provides important clues for other gas separations.

摘要

从碳氢化合物中分离二氧化碳(CO)是生产清洁能源和高纯化学品的关键过程。基于分子筛的吸附是一种节能的分离过程;然而,大多数具有窄而直孔道的分子筛表现出低的 CO 吸收能力。在这里,我们报告了一种具有连续口袋状孔结构的两倍互穿的铜配位网络,即 SIFSIX-14-Cu-i(SIFSIX = 六氟硅酸盐,14 = 4,4'-联吡啶,i = 互穿),是一种卓越的 CO/CH 分子筛分吸附剂,它以空前的选择性完全阻挡较大的 CH 分子,而在环境条件下具有优异的 CO 吸收能力(172.7 cm/cm)。SIFSIX-14-Cu-i 的优异分离性能归因于其独特的孔形状和功能孔表面,它结合了收缩的孔窗口(3.4 Å)和相对较大的孔腔,孔腔中装饰有高密度的无机阴离子。进行了色散校正的密度泛函理论计算和中子粉末衍射,以了解 CO 的结合位点。通过实验突破测试验证了 SIFSIX-14-Cu-i 用于 CO/CH 混合物分离的实际可行性。这项研究不仅展示了 SIFSIX-14-Cu-i 在 CO 分离方面的巨大潜力,而且为其他气体分离提供了重要线索。

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