The asymmetric hydrazone-thiosemicarbazone ligand H2L was synthesized in two stages by means of a double condensation reaction. Firstly, one equivalent of phenyl-semicarbazide reacted with one equivalent of the dialdehyde 2,6-diformylpyridine. Afterwards, the product formed was condensed with one equivalent of phenyl-thiosemicarbazide. The potentially dianionic and pentadentate [N3SO] organic ligand H2L possesses two flexibles bidentate [NS/NO] domains separated by a pyridine spacer which could stabilize a wide variety of metal ions, giving rise to different metallosupramolecular architectures. This ligand was fully characterized by different techniques such as elemental analysis, infrared spectroscopy, mass spectrometry and 1H/13C NMR confirming that it was obtained with high purity.
Previous Article in event
Next Article in event
Design, synthesis and structural characterization of a novel asymmetric hydrazone-thiosemicarbazone ligand with the aim of obtaining interesting metallosupramolecular architectures
Published:
14 November 2021
by MDPI
in The 25th International Electronic Conference on Synthetic Organic Chemistry
session General Organic Synthesis
Abstract:
Keywords: hydrazone-thiosemicarbazone / asymmetric ligand / metallosupramolecular architectures