4.7 Article

Metal-organic framework structures of fused hexagonal motifs with cuprophilic interactions of a triangular Cu(i)3(pyrazolate-benzoate) metallo-linker

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CRYSTENGCOMM
卷 24, 期 20, 页码 3675-3691

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d2ce00268j

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  1. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) [440366605]

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The reaction of a specific bifunctional ligand with Cu and Zn resulted in the formation of three bimetallic MOFs with open structures. This finding is significant for the development of new MOF materials.
The reaction of the N,O-heteroditopic bifunctional ligand 4-(3,5-dimethyl-1H-pyrazol-4-yl)benzoic acid (H(2)mpba) with Cu(NO3)(2)center dot 2.5H(2)O and Zn(NO3)(2)center dot 4H(2)O or Zn(CH3COO)(2)center dot 2H(2)O in N,N-dimethylformamide (DMF) results in concomitant formation of three bimetallic metal-organic frameworks (MOFs) with open structures, [Me2NH2][Zn-4{CuI3(mpba)(3)}(3)(Me2NH)-(DMF)(2)] (1), [Zn-6{Cu-3(I)(mpba)(3)}(4)(DMF)(5)] (2) and [Zn-3{Cu-3(I)(mpba)(3)}(2)(DMF)(3)(H2O)][Zn-4(mu(4)-O){Cu-3(I)(mpba)(3)}(2)(H2O)(4)] (3). Compounds 1 and 3 are isolable in phase pure form under specified conditions. The HSAB hard/soft metal-ligand selectivity (Cu-I-N and Zn-O) allows the structure assembly based on the 3-c trigonal planar {Cu-3(I)(pz)(3)} moiety (pz = pyrazolate) and various 4-6-c {Zn-x(O)(y)(COO)(z)} (x = 2-4, y = 0-1, z = 4-6) secondary building units to be realized neatly. The in situ formed softer Cu-I atoms coordinate with the softer pyrazolate nitrogen donor atoms of the pyrazolate-carboxylate ligand, leaving the carboxylate groups for linking to the Zn atoms. The triangular and trinuclear {Cu-3(I)(mpba)(3)}(3-) metallacycle acts as a tricarboxylate linker between the Zn-x nodes and can be regarded as an expanded version of the benzene-1,3,5-tricaboxylate linker. In all structures the {Cu-3(I)(pz)(3)} moiety is stacked in infinite columns by cuprophilic interactions suggesting the initial formation of the Cu-3(mpba) metallo-ligand. The variable geometry Zn clusters, which are paddle-wheel type, pyramidal and trigonal-prismatic, adapt to the stacked orientation of the carboxylate groups from the {Cu-3(I)(mpba)(3)}(3-) metallacycles. As a result, the formed structures could be viewed as derived from stacked hexagonal honeycomb hcb nets, via 'fusion' of alternating stacked nodes. The resulting nets retain the geometric similarity to the hcb net when viewed along the normal direction to the stack, and the individual topologies represent open structures. The minority phase 2 features 2D layers with a 'dual-strand' hcb net, {4(3)}(2){4(3)center dot 6(12)}. 1 consists of parallel polycatenation, 2D + 2D -> 3D, of triple layers with a point symbol of {4 center dot 6(2)}(2){4(2)center dot 6(6)center dot 8(2)}{6(3)}{6(5)center dot 8}, while 3 presents a pair of interpenetrated 3D + 3D {4 center dot 6 center dot 8}{4(2)center dot 6(5)center dot 8(5)center dot 10(3)} nets as a rare case of hetero-interpenetration. The binodal net in 3 is a rare sqc-3,6-Fdd2-2 type sqc-subnet and the first example in a MOF. In spite of the interpenetration, 3 retains significant porosity and could be activated to demonstrate permanent porosity, thereby classifiable as a MOF with an Ar-based BET surface area of 762 m(2) g(-1) (87 K) and a CO2 adsorption capacity at 1 bar of 78 cm(3) g(-1) (273 K) and 46 cm(3) g(-1) (293 K). The structure organization similarities of 1-3, stipulated by cuprophilic interactions, could have a general importance for linear heteroditopic ligands analogous to H(2)mpba offering a 'fused-hcb' design approach towards open structures.

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