4.6 Article

Solvent-free heterogeneous catalysis for cyanosilylation in a modified sodalite-type Cu(II)-MOF

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RSC ADVANCES
卷 5, 期 31, 页码 24293-24298

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c4ra16350h

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  1. 973 Program [2012CB821701]
  2. Ministry of Education of China [IRT1156]
  3. NSFC [21402112]

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Solvothermal reaction of Cu(OAc)(2) and H3BTT center dot 2HCl generated a sodalite-type metal-organic framework [(Cu4O0.27Cl0.73)(3)(H0.5BTT)(8)(H2O)(12)]center dot 3MeOH center dot 9DMF (1) (BTT3- = 1,3,5-benzene tristetrazolate), which features a porous 3D (3,8)-connected framework constructed by square [Cu-4(mu(4)-O/Cl)] units and triangular BTT ligands and can be dehydrated to form [(Cu4O0.27Cl0.73)(3)(H0.5BTT)(8)] (1') with coordinatively unsaturated Cu2+ centers. Compared with related M-BTT MOFs, partial replacement of mu(4)-Cl with mu(4)-O at the square Cu-4 cluster and the absence of irremovable guest [M(DMF)(6)](2+) cations in 10 enhance the Lewis acidity of coordinatively unsaturated metal centers and the effective pore volume. Open Cu(II) sites with stronger Lewis acidity give rise to 1' being an active, stable and reusable solvent-free heterogeneous catalyst for C-C bond-forming reaction by cyanosilylation of carbonyl compounds. The loading of 1 mol% of catalyst 1' is as low as one eleventh of that used in related Mn-BTT but leads to as high as 96% conversion of benzaldehyde, indicating that the catalytic activity of M-BTT MOFs was significantly improved via post-modification. In addition, the larger pore volume makes 1' selectively adsorb N-2 and O-2 gases with hysteresis loops over CO2 and H-2 gases without hysteresis loops, which did not appear in related M-BTT MOFs.

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