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锚定金属有机骨架的功能化聚芳醚酮在超滤中的应用
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作者 张毅 李洋 +4 位作者 黄文 林继霞 刘阳 罗宇帆 蒋双庆 《山东化工》 CAS 2024年第16期49-53,共5页
聚焦于处理废水当中的牛血清蛋白污染物,提出了一种新型混合基质超滤膜(UiO-66-NH_(2)/C-SPAEKS)的制备方式。通过对聚芳醚酮进行亲水性改性,同时将UiO-66-NH_(2)锚定于基底材料上,显著修饰了膜的表面理化特性以及膜的内部孔道。这种纳... 聚焦于处理废水当中的牛血清蛋白污染物,提出了一种新型混合基质超滤膜(UiO-66-NH_(2)/C-SPAEKS)的制备方式。通过对聚芳醚酮进行亲水性改性,同时将UiO-66-NH_(2)锚定于基底材料上,显著修饰了膜的表面理化特性以及膜的内部孔道。这种纳米粒子负载的超滤膜展现出了良好的应用性能,其中C-SPAEKS/UiO-66-NH_(2)的纯水渗透通量高达339.4 L/(m^(2)·h),对牛血清蛋白的截留率达到98.8%。在长期性测试中,该超滤膜展现出良好的通量恢复能力以及较为稳定的长期性能,整体而言为高分子材料与纳米材料复合应用于超滤膜方向提供了新思路。 展开更多
关键词 聚芳醚酮 孔径修饰 金属有机骨架 酰胺化锚定
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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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