Solvent-mediated preparation of a heterometallic [2 × 2] grid via a 1D metal–organic template with extraordinary acid/base-resistance†
Abstract
A new 1D coordination polymer, [FeIIL(H2O)]·2H2O (1) (H2L = 2,6-bis[3-(pyrazin-2-yl)-1,2,4-triazoly]pyridine) with extraordinary acid/base-resistance was synthesized. It was found that the 1D metal–organic chain can serve as a template to prepare a heterometallic [2 × 2] grid [FeIII2Na2L4(H2O)4]·8H2O (2) through a solvent-mediated strategy by immersing the fresh crystals of 1 in a saturated MeOH solution of NaN3. The transformation was accompanied by the complete dissolution of the original crystals, and the cleavage/regeneration of coordination bonds. The final structure of 2 was unambiguously characterized by means of a single-crystal X-ray diffraction (SCXRD) study. Notably, L2− in 1 exhibits an “acute triangle” configuration, while an “obtuse triangle” configuration is observed in 2. In addition, treatments of 1 with saturated MeOH solutions of NaF, NaCl, NaBr, NaI, and NaN3 in DMF, EtOH, and H2O were also respectively checked. The results did not show any appreciable indication, probably implying that the transformation kinetics is influenced not only by a sodium source but also by a solvent-exclusive effect. Significantly, the resulting grid of 2 could not be accessed by a direct one-pot self-assembly synthetic approach.