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Metal-organic and covalent organic frameworks (MOFs and COFs) as adsorbents for environmentally significant gases (H2, CO2, and CH4)

机译:金属有机和共价有机骨架(MOF和COF)作为对环境重要气体(H2,CO2和CH4)的吸附剂

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摘要

A series of metal-organic frameworks (MOFs) and covalent organic frameworks (COFs) possessingudvarious functionalities, pore structures, and surface areas were evaluated for sorption and storageudproperties of environmentally significant gases (H_2, CO_2, and CH_4). It was concluded that the gasudsorption behavior follows a general trend that materials with high surface area show enhanced gasuduptake performance. For example, MOF-177 (SA = 5200 m^2/g) captures 7.2 wt% of H_2 at 77 K and 19udwt% of CH_4 at 298 K. In addition, MOF-177 exhibits exceptionally high gravimetric CO_2 uptake up toud120 wt% at 298 K. Similarly, the gas storage capacity for COFs seems to follow the same trend and it isuddetermined by the apparent surface area. The architectural stability of both COFs and MOFs upon highudpressure H_2 and CH_4 gas sorption measurements were manifested by isotherms which reach saturationudwithout significant hysteresis.ud
机译:评估了具有各种功能,孔结构和表面积的一系列金属有机框架(MOF)和共价有机框架(COF)的环境重要气体(H_2,CO_2和CH_4)的吸附和存储属性。得出的结论是,气体吸收/吸收行为遵循总体趋势,即具有高表面积的材料显示出增强的气体吸收特性。例如,MOF-177(SA = 5200 m ^ 2 / g)在77 K时捕获7.2 wt%的H_2,在298 K时捕获CH 4的19 udwt%。此外,MOF-177表现出异常高的重量CO_2吸收率在298 K时 ud120 wt%。类似地,COF的储气量似乎遵循相同的趋势,并且由表观表面积决定。在等高的H_2和CH_4气体吸附测量下,COF和MOF的结构稳定性都通过等温线来体现,这些等温线达到饱和 ud,而没有明显的滞后现象。

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