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Adsorption of CO2 on mesocellular siliceous foam iteratively functionalized with dendrimers

机译:树枝状聚合物迭代功能化的介孔硅质泡沫上的CO2吸附

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摘要

Melamine-type dendrimers are grafted to mesocellular siliceous foam (MCF) with ultralarge mesopores by stepwise alternating treatments of the substrate with 2,4,6-trichlorotriazine and ethylenediamine. MCF grafted dendrimers up to 4th generation are prepared and characterized. Very high organic loadings (55 wt% at the 4th generation) are achieved, with half of the initial substrate mesopores volume remaining unoccupied-leaving room for the rapid ingress and egress of small gas molecules. The product materials possess relatively high thermal stability-their decomposition starts at around 300 °C. Adsorption measurements suggest that only the primary amine groups of these melamine type structures are active for CO2 chemisorption. The CO2 adsorption capacities of these adsorbents are improved relative to the unfunctionalized MCF, especially when considered on a wt% substrate basis.
机译:通过用2,4,6-三氯三嗪和乙二胺逐步交替处理底物,将三聚氰胺型树状聚合物接枝到具有超大中孔的中孔硅质泡沫(MCF)。制备并表征了至第四代的MCF接枝树状聚合物。达到了非常高的有机负载量(第四代为55 wt%),一半的初始基质中孔体积仍未被占用,为小气体分子的快速进出提供了空间。产品材料具有较高的热稳定性-它们的分解在300°C左右开始。吸附测量表明,仅这些三聚氰胺类型结构的伯胺基团对CO2化学吸附具有活性。相对于未官能化的MCF,这些吸附剂的CO2吸附能力得到了改善,尤其是当以wt%的基材为基准时。

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