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Adsorptive removal and catalytic performance of metal-organic frameworks containing mixed azolium-bipyridine ligand
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作者 Nadia Gholampour Chizoba I.Ezugwu +2 位作者 shima rahmdele Ali Ghanadzadeh Gilanie Francis Verpoort 《Resources Chemicals and Materials》 2022年第3期201-210,共10页
Two ligands, 1, 3-bis(4-carboxyphenyl)imidazolium chloride and 4, 4-bipyridine, were employed to prepare nickel and zinc azolium based MOFs, Ni-MOF and Zn-MOF by the mixed ligand solvothermal approach. The positively ... Two ligands, 1, 3-bis(4-carboxyphenyl)imidazolium chloride and 4, 4-bipyridine, were employed to prepare nickel and zinc azolium based MOFs, Ni-MOF and Zn-MOF by the mixed ligand solvothermal approach. The positively charged azolium moieties in the imidazolium linker resulted in a charged environment in the as-synthesized frameworks. As a result, Ni-MOF and Zn-MOF demonstrated preferential adsorption of CO_(2) over methane molecules in the gas phase adsorption due to the higher quadruple moment of CO_(2), which interacts more with the positively charged frameworks. Besides, in aqueous media, Ni-MOF and Zn-MOF exhibited incredible adsorption efficiency for anionic dyes. In the following, Ni-MOF was metallated at the carbene site of the azolium linker to generate the novel heterogeneous catalyst Pd/Ni-MOF, which was successfully applied for Sonogashira and Suzuki-Miyaura coupling reactions without losing its activity after three cycles. 展开更多
关键词 Azolium MOFs Dye adsorption Post modification Cross-coupling reactions
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