首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Tunable CO2 Adsorbents by Mixed-Linker Synthesis and Postsynthetic Modification of Zeolitic Imidazolate Frameworks
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Tunable CO2 Adsorbents by Mixed-Linker Synthesis and Postsynthetic Modification of Zeolitic Imidazolate Frameworks

机译:通过混合接头合成和沸石合成的咪唑酸酯骨架的后合成改性可调节的CO2吸附剂

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The incorporation of accessible amine functionality in zeolitic imidazolate frameworks (ZIFs) is used to improve the adsorption selectivity for CO2/CH4 gas separation applications. Two synthetic approaches are described in this work to introduce functionality into the ZIF: (i) mixed-linker ZIF synthesis with 2-aminobenzimidazole as a substitution linker and (ii) postsynthetic modification of a mixed-linker ZIF with ethylenediamine. Using 2-aminobenzimidazole, a linker with a primary amine functional group, substitution of the ZIF-8 linker during synthesis allows for control over the adsorption properties while maintaining the ZIF-8 structure with up to nearly 50% substitution in the mixed-linker ZIF framework. producing a material with tunable pore size and amine functionality. Alternatively, postsynthetic modification of a mixed-linker ZIF containing an aldehyde functional group produces a ZIF material with a primary amine without detrimental loss of micropore volume by controlling the amount of fonctional group sites for modification. Both approaiches using mixed-linker ZIFs yield new materials that show improvement in adsorption Selectivity for the CO2/CH4 gas pair over ZIF-8 and commercially available adsorbents as well as an increase in the heat of adsorption for CO2 without significant changes to the crystal structure. These results indicate that tuning the surface properties of ZIFs by either mixed-linker synthesis and/or postsynthetic modification may generate new materials with improved gas separation properties, thereby providing a new method for tailoring metal-organic frameworks.
机译:在沸石咪唑酸酯骨架(ZIFs)中掺入可及的胺官能团可用于提高对CO2 / CH4气体分离应用的吸附选择性。在这项工作中介绍了两种将ZIF引入功能的合成方法:(i)用2-氨基苯并咪唑作为取代连接基的混合连接基ZIF合成,以及(ii)用乙二胺对混合连接基ZIF进行后合成修饰。使用2-氨基苯并咪唑(具有伯胺官能团的连接基),在合成过程中取代ZIF-8连接基可以控制吸附性能,同时保持ZIF-8结构在混合连接基ZIF中具有近50%的取代框架。生产出孔径和胺官能度可调的材料。备选地,含有醛官能团的混合接头ZIF的后合成修饰通过控制修饰的功能基团位点的量而产生具有伯胺的ZIF材料而没有不利的微孔体积损失。两种使用混合接头ZIF的方法均产生了新材料,与ZIF-8和市售吸附剂相比,新材料显示出对CO2 / CH4气体对的吸附选择性提高,并且对CO2的吸附热增加,而晶体结构没有显着变化。这些结果表明,通过混合接头合成和/或后合成修饰来调节ZIF的表面性能可能会产生具有改进的气体分离性能的新材料,从而为定制金属有机骨架提供了一种新方法。

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