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Effects of Bonding Types and Functional Groups on CO 2 Capture using Novel Multiphase Systems of Liquid-like Nanoparticle Organic Hybrid Materials

机译:新型液状纳米颗粒有机杂化多相体系中键合类型和官能团对CO 2捕集的影响

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摘要

Novel liquid-like nanoparticle organic hybrid materials (NOHMs) which possess unique features including negligible vapor pressure and a high degree of tunability were synthesized and their physical and chemical properties as well as CO 2 capture capacities were investigated. NOHMs can be classified based on the synthesis methods involving different bonding types, the existence of linkers, and the addition of task-specific functional groups including amines for CO 2 capture. As a canopy of polymeric chains was grafted onto the nanoparticle cores, the thermal stability of the resulting NOHMs was improved. In order to isolate the entropy effect during CO 2 capture, NOHMs were first prepared using polymers that do not contain functional groups with strong chemical affinity toward CO 2. However, it was found that even ether groups on the polymeric canopy contributed to CO 2 capture in NOHMs via Lewis acid-base interactions, although this effect was insignificant compared to the effect of task-specific functional groups such as amine. In all cases, a higher partial pressure of CO 2 was more favorable for CO 2 capture, while a higher temperature caused an adverse effect. Multicyclic CO 2 capture tests confirmed superior recyclability of NOHMs and NOHMs also showed a higher selectivity toward CO 2 over N 2O, O 2 and N 2. © 2011 American Chemical Society.
机译:合成了具有可忽略的蒸气压和高度可调性的独特特征的新型液体状纳米颗粒有机杂化材料(NOHMs),并研究了它们的理化性质以及CO 2捕获能力。可以基于涉及不同键合类型,接头的存在以及添加特定任务的官能团(包括用于捕获CO 2的胺)的合成方法对NOHM进行分类。当将聚合物链的冠层接枝到纳米颗粒核上时,所得NOHM的热稳定性得到改善。为了隔离捕获CO 2期间的熵效应,首先使用不包含对CO 2具有强化学亲和力的官能团的聚合物制备NOHM,但是,发现即使聚合物冠层上的醚基也有助于捕获CO 2。通过路易斯酸碱相互作用在NOHMs中发挥作用,尽管与任务特定的官能团(如胺)相比,这种作用微不足道。在所有情况下,较高的CO 2分压更有利于CO 2的捕集,而较高的温度则产生不利影响。多环CO 2捕获测试证实了NOHM的可回收性高,并且NOHM还显示出对N 2 O,O 2和N 2更高的CO 2选择性。©2011 American Chemical Society。

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