吸附
化学
多孔性
分拆(数论)
土壤孔隙空间特征
星团(航天器)
介孔材料
化学工程
金属有机骨架
拓扑(电路)
纳米技术
物理化学
有机化学
材料科学
催化作用
计算机科学
数学
工程类
组合数学
程序设计语言
作者
Lizhen Liu,Zizhu Yao,Yingxiang Ye,Yike Yang,Quanjie Lin,Zhangjing Zhang,M. O’Keeffe,Shengchang Xiang
摘要
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.
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