Integrating the Pillared-Layer Strategy and Pore-Space Partition Method to Construct Multicomponent MOFs for C2H2/CO2 Separation
收藏Figshare2020-04-25 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Integrating_the_Pillared-Layer_Strategy_and_Pore-Space_Partition_Method_to_Construct_Multicomponent_MOFs_for_C_sub_2_sub_H_sub_2_sub_CO_sub_2_sub_Separation/12264842
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Introducing multiclusters and multiligands (mm) in a well-defined array will greatly increase the diversity of metal–organic frameworks (MOFs). Here, a series of porous mm-MOFs constructed from a pillared-layer and pore-space partition (PL-PSP) have been achieved. FJU-6 with {Co3}-cluster-based sheets and {Co6}-cluster-based pillars exhibits new (3,9,12)-connected llz topology. By using the substituted analogues of the ligands and metal ions, seven isoreticular mm-MOFs (FJU-6-X, X = PTB, TATB, Me-INA, F-INA, NDC, BrBDC, Ni) have been synthesized with the adjustable BET surface areas ranging from 731 to 1306 m2/g as well as the adsorption capacity of CO2 increasing by 77%. The C2H2/CO2 mixture can be effectively separated in the breakthrough experiments in the fixed bed filled with solid FJU-6-TATB at ambient temperature. In all, integrating pillared-layer strategy and pore-space partitioning is effective at constructing mm-MOFs with multivariate environments for the optimization of gas adsorption and separation.
创建时间:
2020-04-25



