Abstract
Six new metal–organic frameworks with novel structural features based on a star-like ligand tri(4-pyridylphenyl)amine (TPPA), namely, {[Cd(TPPA)(pht)(H2O)](H2O)2}n (1), {[Zn(TPPA)(pht)](H2O)2}n (2), {[Zn(TPPA)(trans-chdc)0.5(NO3)]·(H2O)}n (3), {[Co(TPPA)(bdc)(H2O)]·(H2O)}n (4), {[Co(TPPA)(bdc)(H2O)]·(H2O)4}n (5), and {[Co(TPPA)(bdc)]}n (6) (H2pht = phthalic acid, trans-H2chdc = trans-1,4-cyclohexanedicarboxylic acid, H2bdc = benzene-p-dicarboxylic acid), have been synthesized under solvothermal conditions. Compounds 1–3 all exhibit fascinating 2D → 3D frameworks with coexistence of inclined polycatenation and polythreading characters. On the other hand, compounds 4–6 are three supramolecular isomers. Even though the compositions of 4–6 are almost same, they generate different structures. Compound 4 shows a 2D → 3D framework with parallel polycatenation of undulated square layers. Compound 5 reveals 3-fold interpenetrating 3D frameworks with {4.62}{43.67} crs topology. Compound 6 shows a 4-fold interpenetr...
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