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金属有机框架通道的胺功能化用于二氧化碳的有效化学固定:与三种新设计的多孔网络的对比研究

Amine Functionalization of Channels of Metal-Organic Frameworks for Effective Chemical Fixation of Carbon Dioxide: A Comparative Study with Three Newly Designed Porous Networks.

作者信息

Moi Rajib, Bedi Swati, Biradha Kumar

机构信息

Department of Chemistry, Indian Institute of Technology Kharagpur, 721302, Kharagpur, India.

出版信息

ChemistryOpen. 2024 Sep;13(9):e202400110. doi: 10.1002/open.202400110. Epub 2024 May 13.

Abstract

Catalytic transformation of CO into value-added chemical products can provide an appropriate solution for the raising environmental issues. To date, various metal-organic frameworks (MOFs) with transition metal ions have been explored for CO capture and conversion, but alkaline earth metal-based MOFs are comparatively less studied. Metal ions like Sr(II) having relatively large radius give rise to a high coordination number resulting in higher stability of the MOFs. Moreover, the introduction of N-rich functional group in organic linker like -NH, -CONH- and triazole into MOF backbone enhance their CO capture and conversion efficiency. Herein, the effect of amine group on the catalytic efficiency of MOFs for CO cycloaddition with epoxides under solvent free and ambient conditions are presented. The di-carboxylates, such as 5-aminoisophthalate (AmIP) and 5-bromoisophthalate (BrIP) were utilized to synthesize Sr(II) based MOFs. The Zn(II) MOF was synthesized using tetra-carboxylate containing amide spacer (OAT) and 4-amino-4H-1,2,4-triazole (AMT). All three MOFs exhibited porous networks with guest available volume ranging from 15 to 58 %. The catalytic efficiency of the MOFs towards carbon dioxide fixation reaction was explored. The catalytic performances revealed that the presence of amine group in the channels enhances the catalytic efficiency of the MOFs.

摘要

将一氧化碳催化转化为高附加值的化学产品可为日益严峻的环境问题提供一个合适的解决方案。迄今为止,人们已经探索了各种含有过渡金属离子的金属有机框架(MOF)用于一氧化碳的捕获和转化,但对碱土金属基MOF的研究相对较少。像Sr(II)这样半径相对较大的金属离子会导致高配位数,从而使MOF具有更高的稳定性。此外,在有机连接体中引入富含氮的官能团,如-NH、-CONH-和三唑到MOF主链中,可以提高它们对一氧化碳的捕获和转化效率。在此,本文介绍了胺基在无溶剂和环境条件下对MOF催化一氧化碳与环氧化物环加成反应效率的影响。利用二羧酸盐,如5-氨基间苯二甲酸(AmIP)和5-溴间苯二甲酸(BrIP)合成了基于Sr(II)的MOF。使用含有酰胺间隔基的四羧酸盐(OAT)和4-氨基-4H-1,2,4-三唑(AMT)合成了Zn(II) MOF。所有这三种MOF都表现出多孔网络,客体可利用体积范围为15%至58%。研究了MOF对二氧化碳固定反应的催化效率。催化性能表明,通道中胺基的存在提高了MOF的催化效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ced/11633332/6ecd4449b629/OPEN-13-e202400110-g003.jpg

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