Computational and experimental techniques for characterization and applications of some metal complexes.
Paper ID : 1070-ICBAS2024
Authors
Salwa aly hassan albohy *
Computational and experimental analysis for characterization and applications of some metal complexes
Abstract
Metal complexes have gained significant importance in medicinal chemistry due to their diverse therapeutic applications. These complexes exhibit a wide range of biological activities, including anticancer, antimicrobial, antiviral, and antidiabetic properties. This review explores characterization techniques for metal complexes, focusing on transition metal compounds. Various spectroscopic methods are including infrared, UV-vis, and ESR, employed to determine the bonding nature and strength between ligands and central atoms. Morphological characterization techniques provide information about the shape, size, surface structure, and distribution of materials at microscopic and nanoscopic scales. Magnetochemistry and conductance measurements provide insights into complex structures and ion formation in solution. Elemental analysis, mass spectra, magnetic moment measurements, and NMR spectroscopy further elucidate complex structures. Thermogravimetric analysis confirms the presence of coordinated water molecules in some complexes. Computational methods, including DFT calculations and molecular docking, have been employed to complement experimental findings and predict potential applications also been extensively reviewed, highlighting their diverse biological applications
Keywords
Computational methods ÙˆMorphological characterization
Status: Accepted