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Reactive Adsorption of NO2 on Copper-Based Metal-Organic Framework and Graphite Oxide/Metal-Organic Framework Composites

机译:铜基金属有机骨架和氧化石墨/金属有机骨架复合材料对NO2的反应吸附

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摘要

Composites oF a copper-based metal-organic framework (MOF) and graphite oxide (CO) were tested for NO2 adsorption and retention of NO in dry and moist conditions. The samples were analyzed before and after exposure to NO2 by thermal analysis, Fourier transform infrared spectroscopy (FTIR), X-ray diffraction, and adsorption of nitrogen at -196 °C. In dry conditions, the composites exhibit an enhanced NO2 breakthrough capacity compared to MOF and GO separately. This improvement is linked to the increased porosity and the reactive adsorption of NO2 on copper, which leads to the formation of bidentate and monodentate nitrate. Even though less NO2 is adsorbed in moist conditions than in dry ones, the materials are more stable than in dry conditions and the NO retention is enhanced. Water in the challenge gas competes with NO2 to bind to copper, and thus, the number of reactive adsorption sites on which NO2 can be adsorbed/reacted decreases.
机译:测试了铜基金属有机骨架(MOF)和氧化石墨(CO)的复合材料在干燥和潮湿条件下对NO2的吸附和NO的保留率。通过热分析,傅立叶变换红外光谱(FTIR),X射线衍射和-196°C下的氮吸附,对暴露于NO2之前和之后的样品进行了分析。在干燥条件下,与MOF和GO相比,复合材料的NO2穿透能力增强。这种改善与孔隙率的提高和NO2在铜上的反应性吸附有关,这导致形成二齿和单齿硝酸盐。即使在潮湿条件下比在干燥条件下吸附的NO2少,该材料比在干燥条件下更稳定,并且NO保留能力得到提高。挑战气体中的水与NO2竞争与铜结合,因此,可以吸附/反应NO2的反应性吸附位的数量减少。

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