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Li-modified metal-organic frameworks for CO2/CH4 separation: a route to achieving high adsorption selectivity

机译:用于CO2 / CH4分离的LI-改性金属 - 有机框架:实现高吸附选择性的途径

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In this work three Li-modified metal-organic frameworks (MOFs) were constructed from MOF-5, by substituting the H atoms with O-Li groups in the organic linkers. A multiscale approach combining grand canonical Monte Carlo (GCMC) simulation and density functional theory (DFT) calculation was adopted to investigate the separation of CO2/CH4 mixtures in these new Li-modified MOFs, as well as in a previously proposed Li-doped MOF-5 for hydrogen storage and the original MOF-5. The results show that the selectivity of CO2 from CH4/CO2 mixtures in Limodified MOFs is greatly improved, due to the enhancement of electrostatic potential in the materials by the presence of the metals. One of the new Li-modified MOFs, chem-4Li, shows a higher CO2 selectivity than any other known MOFs. Therefore, this work provides a route to improve the separation performance of MOFs for gas mixtures with components that have large differences in dipole and/or quadrupole moments. In addition, the mechanisms for selectivity enhancement in the Li-modified MOFs were elucidated at the molecular level, and we found that the location of doped metals can change the adsorption sites for CO2, and in turn may change the active sites in MOFs when used as catalysts.
机译:在这项工作中,通过将H原子与有机连接物中的O-Li基团用H原子代替,将三种改性金属 - 有机骨架(MOF)由MOF-5构成。采用多尺度方法,采用了大规范蒙特卡罗(GCMC)仿真和密度泛函理论(DFT)计算的多尺度方法来研究CO2 / CH4混合物在这些新的Li-改性的MOF中的分离,以及先前提出的Li-掺杂的MOF -5用于储氢和原始MOF-5。结果表明,由于金属存在的静电电位提高了静电电位,大大改善了来自CH4 / CO2混合物的CO 2的选择性。新的Li-Demified Mofs,Chem-4Li中的一种,表明了比任何其他已知的MOF的CO 2选择性更高。因此,这项工作提供了改善气体混合物的MOF的分离性能的途径,其与偶极子和/或四极矩具有大差异的组分。此外,在分子水平下阐明了锂改性的MOF中的选择性增强机制,我们发现掺杂金属的位置可以改变CO 2的吸附位点,并且当使用时可以改变MOF中的活性位点作为催化剂。

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