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    He-xiu Liu, Rui-lin Man, Bai-shu Zheng, Zhao-xu Wang, Ping-gui Yi. Insight into Capture of Greenhouse Gas (CO2) based on Guanidinium Ionic Liquids (cited: 1)[J]. Chinese Journal of Chemical Physics , 2014, 27(2): 144-148. DOI: 10.1063/1674-0068/27/02/144-148
    Citation: He-xiu Liu, Rui-lin Man, Bai-shu Zheng, Zhao-xu Wang, Ping-gui Yi. Insight into Capture of Greenhouse Gas (CO2) based on Guanidinium Ionic Liquids (cited: 1)[J]. Chinese Journal of Chemical Physics , 2014, 27(2): 144-148. DOI: 10.1063/1674-0068/27/02/144-148

    Insight into Capture of Greenhouse Gas (CO2) based on Guanidinium Ionic Liquids (cited: 1)

    • Quantum mechanics and molecular dynamics are used to simulate guanidinium ionic liquids. Results show that the stronger interaction exists between guanidine cation and chlorine anion with interaction energy about 109.216 kcal/mol. There are two types of spatial distribution for the title system: middle and top. Middle mode is a more stable conformation according to energy and geometric distribution. It is also verified by radial distribution function. The continuous increase of carbon dioxide (CO2) does not affect the structure of ionic liquids, but CO2 molecules are always captured by the cavity of ionic liquids.
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