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首页> 外文期刊>Inorganic Chemistry Frontiers >Three stable dinuclear [M-2(OH)(0.5)(NO3)(0.5)(RCOO)(2)(RN)(4)] (M = Cu, Ni) based metal-organic frameworks with high CO2 adsorption and selective separation for O-2/N-2 and C3H8/CH4
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Three stable dinuclear [M-2(OH)(0.5)(NO3)(0.5)(RCOO)(2)(RN)(4)] (M = Cu, Ni) based metal-organic frameworks with high CO2 adsorption and selective separation for O-2/N-2 and C3H8/CH4

机译:三个稳定的二核[M-2(OH)(0.5)(NO 3)(0.5)(RCOO)(2)(RN)(4)](M = Cu,Ni)金属 - 有机骨架,具有高CO 2吸附和选择性 O-2 / N-2和C3H8 / CH4的分离

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摘要

Three highly porous MOFs with dinuclear [M-2(OH)(0.5)(NO3)(0.5)(RCOO)(2)(RN)(4)] SBUs (secondary building units), [Cu-4(L-1)(4)(OH)(NO3)]center dot 2(NO3)center dot 4DMF (compound Cu-L-1, HL1 = 5-imidazol-1-yl-nicotinic acid, DMF = N,N-dimethylformamide), [Ni-4(L-1)(4)(OH)(NO3)(3)(DMF)(2)]center dot 3DMF center dot 4H(2)O (compound Ni-L-1) and [Ni-4(L-2)(4)(OH)(NO3)(3)(DMF)(2)]center dot 3DMF (compound Ni-L-2, HL2 = 5-[1,2,4]triazol-1-yl-nicotinic acid), have been solvothermally constructed using a heterofunctional ligand motif with carboxylate and azolate groups. All three compounds show high thermal and chemical stability, not only in water but also in acidic and basic solutions (pH = 2-11). Due to the presence of accessible open metal sites (OMSs), compounds Cu-L-1, Ni-L-1, and Ni-L-2 exhibit significant ability to capture CO2 (114.8, 88.3 and 93.7 cm(3) g(-1), respectively, under 1 bar at 273 K). Interestingly, gas adsorption results show that all three compounds exhibit high selectivity toward O-2 over N-2 at 77 K and C3H8 over CH4 at 298 K, which indicates that the three materials have potential for gas separation applications.
机译:三个高度多孔的MOF,具有二核[M-2(OH)(0.5)(NO 3)(0.5)(RCOO)(2)(RN)(4))SBUS(二级建筑单元),[Cu-4(L-1 )(4)(OH)(NO 3)]中心点2(NO3)中心点4DMF(化合物Cu-L-1,HL1 = 5-咪唑-1-基烟酸,DMF = N,N-二甲基甲酰胺), [Ni-4(L-1)(4)(OH)(OH)(NO 3)(3)(DMF)(2)]中心点3DMF中心点4H(2)O(化合物Ni-L-1)和[Ni- 4(L-2)(4)(OH)(NO 3)(3)(3)(DMF)(2)]中心点3DMF(化合物Ni-L-2,HL2 = 5- [1,2,4]三唑-1 - 烟酸),使用含有羧酸盐和含唑类基团的异官能配体基序已经溶于溶剂。所有三种化合物都显示出高热和化学稳定性,不仅在水中,而且含有酸性和碱性溶液(pH = 2-11)。由于存在无障碍的开放金属位点(OMS),化合物Cu-1 -1,Ni-1 -1和Ni-L-2表现出显着的捕获CO 2(114.8,88.3和93.7cm(3)g(分别在273 k下的1巴下分别为1)。有趣的是,气体吸附结果表明,所有三种化合物在77K和C3H8上以298K的77K和C3H8在N-2上表现出高选择性,表明三种材料具有气体分离应用的可能性。

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