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首页> 外文期刊>ACS applied materials & interfaces >Superior Performance of Copper Based MOF and Aminated Graphite Oxide Composites as CO2 Adsorbents at Room Temperature
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Superior Performance of Copper Based MOF and Aminated Graphite Oxide Composites as CO2 Adsorbents at Room Temperature

机译:铜基MOF和胺化氧化石墨复合材料在室温下作为CO2吸附剂的优异性能

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摘要

New composites Cu-BTC MOF and graphite oxide modified with urea (GO-U) are developed and tested as CO2 adsorbents at room temperature. The composite containing GO-U with the highest nitrogen content exhibits an excellent CO2 uptake (4.23 mmol/g) at dynamic conditions. The incorporation of GO-U into MOF changes the chemistry and microstructure of the parent MOF and results in synergistic features beneficial for CO2 retention on the surface. To identify these features the initial and exhausted materials were extensively characterized from the points of view of their porosity and chemistry. Although the adsorption forces are relatively strong, the results indicate that CO^ is mainly physisorbed on the composites at dry dynamic conditions at ambient temperature and pressure. The primary adsorption sites include small micropores specific for the composites, open Cu sites, and cage window sites.
机译:开发了新型复合材料Cu-BTC MOF和用尿素(GO-U)改性的氧化石墨,并在室温下作为CO2吸附剂进行了测试。含有最高氮含量的GO-U的复合材料在动态条件下表现出出色的CO2吸收(4.23 mmol / g)。 GO-U掺入MOF会改变母体MOF的化学性质和微观结构,并产生有助于将CO2保留在表面的协同功能。为了确定这些特征,从材料的孔隙率和化学角度出发,对初始材料和耗尽材料进行了广泛的表征。尽管吸附力较强,但结果表明,CO 2主要在环境温度和压力下的干燥动态条件下物理吸附在复合材料上。主要的吸附位点包括复合材料特有的小微孔,开放的Cu位点和笼状窗口位点。

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