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功能性介孔氧化硅对六价铬的吸附研究进展 被引量:2
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作者 张黎 宋方祥 +2 位作者 王帅 张雪 李焱 《应用化工》 CAS CSCD 北大核心 2019年第8期1949-1953,1958,共6页
为了给以后去除六价铬提供一定思路,以介孔氧化硅为基质材料,总结了用有机官能团修饰、与其他材料(石墨烯氧化物、磁性材料和碳点)复合的功能性介孔氧化硅材料对六价铬的吸附研究,并对今后这类功能性材料进一步展望,以期能更加经济有效... 为了给以后去除六价铬提供一定思路,以介孔氧化硅为基质材料,总结了用有机官能团修饰、与其他材料(石墨烯氧化物、磁性材料和碳点)复合的功能性介孔氧化硅材料对六价铬的吸附研究,并对今后这类功能性材料进一步展望,以期能更加经济有效去除六价铬。 展开更多
关键词 六价铬 吸附 介孔氧化硅 有机官能团修饰 复合材料
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Influence of Functional Groups and Modification Sites of Metal-Organic Frameworks on CO2/CH4 Separation:A Monte Carlo Simulation Study
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作者 龚捷 李炜 李松 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2018年第1期52-60,I0001,共10页
In order to explore the influence of modification sites of functional groups on landfill gas (CO2/CH4) separation performance of metal-organic frameworks (MOFs), six types of or- ganic linkers and three types of f... In order to explore the influence of modification sites of functional groups on landfill gas (CO2/CH4) separation performance of metal-organic frameworks (MOFs), six types of or- ganic linkers and three types of functional groups (i.e. -F, -NH2, -CH3) were used to construct 36 MOFs of pcu topology based on copper paddlewheel. Grand canonical Monte Carlo sim- ulations were performed in this work to evaluate the separation performance of MOFs at low (vacuum swing adsorption) and high (pressure swing adsorption) pressures, respectively. Simulation results demonstrated that CO2 working capacity of the unfunctionalized MOFs generally exhibits pore-size dependence at 1 bar, which increases with the decrease in pore sizes. It was also found that -NH2 funetionalized MOFs exhibit the highest CO2 uptake due to the enhanced Coulombic interactions between the polar -NH2 groups and the quadrupole moment of CO2 molecules, which is followed by -CH3 and -F functionalized ones. Moreover, positioning the functional groups -NH2 and -CH3 at sites far from the metal node (site b) exhibits more significant enhancement on CO2/CH4 separation performance compared to that adjacent to the metal node (site a). 展开更多
关键词 Metal-organic frmneworks Pore-size dependence Functional groups Modifi-cation sites Interaction energy
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