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Porous Zn-MOF with Two Diverse Cages Synthesized Using Functionalized Biphenyl Tricarboxylic Acid: CO2 Selective Adsorption and Fixation

New journal of chemistry(2023)

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摘要
A cage-like MOF has demonstrated tremendous potential in gas selective adsorption and CO2 catalysis due to its distinctive structural features. Accordingly, a novel cage-like MOF 1 was synthesized using the biphenyl tricarboxylic acid ligand, (1,1 '-biphenyl)-2,4,6-tricarboxylic acid (H3L), and Zn(II) via a solvothermal reaction. 1 exhibited a porous three-dimensional framework formed by interconnected dodecahedron (5.2 & Aring;) and octahedron (4.7 & Aring;) cages, which was based on an interesting 13-connected fcu topology. Significantly, 1a has excellent adsorption properties for C2H2 and CO2 and selective separation performance for C2H2/CO2, C2H2/CH4, and CO2/CH4. Moreover, under the action of the Lewis acid sites, 1a also shows highly efficient and recyclable catalytic properties for the reaction of CO2 with various epoxides.
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