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通过胺功能化对二胺接枝金属有机骨架吸附剂的二氧化碳捕获能力进行微调

Fine-Tuning of the Carbon Dioxide Capture Capability of Diamine-Grafted Metal-Organic Framework Adsorbents Through Amine Functionalization.

作者信息

Jo Hyuna, Lee Woo Ram, Kim Nam Woo, Jung Hyun, Lim Kwang Soo, Kim Jeong Eun, Kang Dong Won, Lee Hanyeong, Hiremath Vishwanath, Seo Jeong Gil, Jin Hailian, Moon Dohyun, Han Sang Soo, Hong Chang Seop

机构信息

Department of Chemistry, Korea University, Seoul, 136-713, Republic of Korea.

Center for Computational Science, Korea Institute of Science and Technology (KIST), Seoul, 136-791, Republic of Korea.

出版信息

ChemSusChem. 2017 Feb 8;10(3):541-550. doi: 10.1002/cssc.201601203. Epub 2016 Dec 22.

Abstract

A combined sonication and microwave irradiation procedure provides the most effective functionalization of ethylenediamine (en) and branched primary diamines of 1-methylethylenediamine (men) and 1,1-dimethylethylenediamine (den) onto the open metal sites of Mg (dobpdc) (1). The CO capacities of the advanced adsorbents 1-en and 1-men under simulated flue gas conditions are 19 wt % and 17.4 wt %, respectively, which are the highest values reported among amine-functionalized metal-organic frameworks (MOFs) to date. Moreover, 1-den exhibits both a significant working capacity (12.2 wt %) and superb CO uptake (11 wt %) at 3 % CO . Additionally, this framework showcases the superior recyclability; ultrahigh stability after exposure to O , moisture, and SO ; and exceptional CO adsorption capacity under humid conditions, which are unprecedented among MOFs. We also elucidate that the performance of CO adsorption can be controlled by the structure of the diamine ligands grafted such as the number of amine end groups or the presence of side groups, which provides the first systematic and comprehensive demonstration of fine-tuning of CO uptake capability using different amines.

摘要

超声处理与微波辐射相结合的方法能最有效地将乙二胺(en)以及支链伯胺1-甲基乙二胺(men)和1,1-二甲基乙二胺(den)官能团化到Mg(dobpdc)的开放金属位点上(1)。在模拟烟道气条件下,先进吸附剂1-en和1-men的CO吸附量分别为19 wt%和17.4 wt%,这是迄今为止胺官能化金属有机框架(MOF)中报道的最高值。此外,1-den在3%CO条件下既表现出显著的工作吸附量(12.2 wt%)又具有出色的CO吸附量(11 wt%)。此外,该框架展现出卓越的可回收性;暴露于O、水分和SO后具有超高稳定性;以及在潮湿条件下具有出色的CO吸附能力,这在MOF中是前所未有的。我们还阐明,CO吸附性能可以通过接枝的二胺配体结构来控制,例如胺端基的数量或侧基的存在,这首次系统全面地证明了使用不同胺对CO吸附能力进行微调。

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