MANGANESE COMPLEXES WITH TRIDENTATE BENZIMIDAZOLE LIGANDS: SYNTHESIS, STRUCTURE, AND MAGNETIC PROPERTIES
Abstract
Tridentate ligands on the move metal edifices have drawn a ton of interest due to their different primary and magnetic qualities. In this exploration, we portray the synthesis of manganese edifices containing tridentate benzimidazole ligands, their underlying portrayal, and an assessment of their magnetic qualities. To examine the chance of magnetic way of behaving coming about because of the association between the manganese places and the benzimidazole ligands, these edifices were planned and incorporated. By responding the expected tridentate benzimidazole ligands with the appropriate manganese salts, the manganese edifices were made. Different insightful techniques, like single-gem X-beam diffraction, FT-IR spectroscopy, and natural investigation, were utilized to describe the resultant edifices. These strategies offered quick data on the buildings' coordination modes, calculation, and general construction. By utilizing X-beam single-gem diffraction, the precious stone construction of the copper (II) complex has been recognized. Each copper (II) molecule is encircled by a coordination climate that looks like a distorted octahedron.







