二氯甲烷
分子动力学
吸附
多孔性
材料科学
分子
多孔介质
分子间力
纳米尺度
选择性
化学工程
化学物理
环境压力
纳米技术
溶剂
计算化学
热力学
化学
物理化学
有机化学
复合材料
催化作用
工程类
物理
作者
Pablo Collado,Manuel M. Piñeiro,Martı́n Pérez-Rodrı́guez
摘要
In this study we analyse from a theoretical perspective the encapsulation of both gaseous H2 and CO2 at different conditions of pressure and temperature in a Type II porous liquid, composed by nanometric scale cryptophane-111 molecules dispersed in dichloromethane, using atomistic molecular dynamics. Gaseous H2 tends to occupy cryptophane–111’s cavities in the early stages of the simulation; however, a remarkably greater selectivity of CO2 adsorption can be seen in the course of the simulation. Calculations were performed at ambient conditions first, and then varying temperature and pressure, obtaining some insight about the different adsorption found in each case. An evaluation of the host molecule cavities accessible volume was also performed, based on the guest that occupies the pore. Finally, a discussion between the different intermolecular host–guest interactions is presented, justifying the different selectivity obtained in the molecular simulation calculations. From the results obtained, the feasibility of a renewable separation and storage method for CO2 using these nanometric scale porous liquids is pointed out.
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