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上海市自然科学基金(11ZR1408700)

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发文基金:上海市自然科学基金国家自然科学基金国家重点基础研究发展计划更多>>
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CO_2 capture through halogen bonding: A theoretical perspective
2012年
Halogen bonding interactions between several halogenated ion pairs and CO2 molecules have been investigated by means of density functional theory calculations. To account for the influence of solvent environment, the implicit polarized continuum model was also employed. The bromide and iodide cations of ionic liquids (ILs) under study can interact with CO2 molecules via X O interactions, which become much stronger in strength than those in the complexes of iodo-perfluorobenzenes, very effective halogen bond donors, with CO2 molecules. Such interactions, albeit somewhat weaker in strength, are also observed between halogenated ion pairs and CO2 molecules. Thus, the solubility of CO2 may be improved when using halogenated ILs, as a result of the formation of X O halogen bonds. Under solvent effects, the strength of the interactions tends to be weakened to some degree, with a concomitant elongation of intermolecular distances. The results presented here would be very useful in the design and synthesis of novel and potent ILs for CO2 physical absorption.
LI HaiYingLU YunXiangZHU XiangPENG ChangJunHU JunLIU HongLaiHU Ying
关键词:CALCULATIONS
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