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Ethylenediamine loading into a manganese-based metal–organic framework enhances water stability and carbon dioxide uptake of the framework

机译:乙二胺加载成锰的金属有机骨架提高了水稳定性和二氧化碳的框架

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摘要

Metal–organic frameworks (MOFs) based on 2,5-dihydroxyterepthalic acid (DOBDC) as the linker show very high CO2 uptake capacities at low to moderate CO2 pressures; however, these MOFs often require expensive solvent for synthesis and are difficult to regenerate. We have synthesized a Mn-DOBDC MOF and modified it to introduce amine groups into the structure by functionalizing its metal coordination sites with ethylenediamine (EDA). Repeat framework synthesis was then also successfully performed using recycled dimethylformamide (DMF) solvent. Characterization by elemental analysis, FTIR and thermogravimetric studies suggest that EDA molecules are successfully substituting the original metal-bound DMF. This modification not only enhances the material's carbon dioxide sorption capacity, increasing stability to repeated CO2 sorption cycles, but also improves the framework's stability to moisture. Moreover, this is one of the first amine-modified MOFs that can demonstrably be synthesized using recycled solvent, potentially reducing the future costs of production at larger scales.
机译:基于2,5-二羟基苯二甲酸(DOBDC)的金属 - 有机框架(MOF)作为接头显示出低于低至中等的CO 2压力的非常高的CO2吸收能力;然而,这些MOF通常需要昂贵的合成溶剂,并且难以再生。我们已经合成了MN-DOBDC MOF并通过用乙二胺(EDA)官能化金属配位位点来将其改性将胺基引入结构中。然后使用再循环的二甲基甲酰胺(DMF)溶剂成功地进行重复框架合成。元素分析的特征,FTIR和热重分析表明EDA分子成功地代替原始金属结合的DMF。这种改性不仅提高了材料的二氧化碳吸附能力,增加了对重复的二氧化碳吸附循环的稳定性,而且还提高了框架对水分的稳定性。此外,这是第一胺改性的MOF之一,可以使用再循环溶剂来合成,潜在地降低更大的尺度的未来生产成本。

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