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Synthesis, spectroscopic characterizations, conductometric titration and investigation of potent antioxidant activities of gallic acid complexes with Ca (II), Cu (II), Zn(III), Cr(III) and Se (IV) metal ions
Faculty
Science
Year:
2022
Type of Publication:
ZU Hosted
Pages:
Authors:
Sami Mahmoud Mohamed Ali Megharbel
Staff Zu Site
Abstract In Staff Site
Journal:
Journal of Molecular Liquids ElSevier
Volume:
Keywords :
Synthesis, spectroscopic characterizations, conductometric titration , investigation
Abstract:
Gallic acid metal complexes were prepared and characterised using elemental analysis, infrared spectroscopy, proton nuclear magnetic resonance spectroscopy, electronic spectroscopy, magnetic susceptibility, scanning electron microscopy, transmission electron microscopy and X-ray diffraction. The non-electrolytic nature of the gallic acid complexes was confirmed on the basis of their molar conductance values. Conductometric titrations for Cu+2 with gallic acid confirmed the formation of a binary Cu(II) gallic acid complex. Spectral data showed that gallic acid acted as a bidentate ligand with different metal ions through meta- and para-OH phenolic groups. The complexes had different geometries, including octahedral and square planar. The thermal properties of the complexes were explored using thermogravimetric and differential thermogravimetric techniques. The surface morphology of the gallic acid complexes was observed via scanning electron microscopy. Results showed that small particles can form agglomerates with different shapes. Transmission electron microscopy revealed that the gallic acid complexes have spherical black spots with particle sizes ranging from 4.90 nm to 93.87 nm. X-ray diffraction analysis showed that the crystallinity of gallic acid was not similar to its metal complexes, confirming that the complexes formed had well-defined crystalline structure. The antioxidant activities of gallic acid and its metal complexes were assessed. Results showed that the gallic acid complexes with Cu, Zn, Cr or Se showed considerable antioxidant activities. Further studies could evaluate the potency of these complexes to elevate the antioxidant defence system and enhance body functions against degenerative diseases, such as Alzheimer disease, and viral diseases, such as COVID-19.
Author Related Publications
Sami Mahmoud Mohamed Ali Megharbel, "Charge transfer complexes of cyclamate sweetener compound with vacant orbital acceptors (VCl3, RuCl3, PtCl2, SeCl4, and AuCl3): Synthesis, structural, spectroscopic, and biological studies", ElSevier, 2021
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Sami Mahmoud Mohamed Ali Megharbel, "In Situ Neutral System Synthesis, Spectroscopic, and Biological Interpretations of Magnesium(II), Calcium(II), Chromium(III), Zinc(II), Copper(II) and Selenium(IV) Sitagliptin Complexes", MDPI, 2021
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Sami Mahmoud Mohamed Ali Megharbel, "Synthesis, chemical identification, antioxidant capacities and immunological evaluation studies of a novel silver(I) carbocysteine complex", El-Sevier, 2014
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Sami Mahmoud Mohamed Ali Megharbel, "Preparation, spectroscopic, thermal, antihepatotoxicity, hematological parameters and liver antioxidant capacity characterizations of Cd(II), Hg(II), and Pb(II) mononuclear complexes of paracetamol anti-inflammatory drug", El-Sevier, 2014
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Department Related Publications
Mohamed Gamal Helmy Mohamed Abdelwahed, "Electronic Properties of Organic Complexes. 2. Reactive Azodyes", Spain, 1993
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Mohamed Gamal Helmy Mohamed Abdelwahed, "Electrical Behaviour of some Azodye Mixed Ligand with Gd3+ and Er3+. b", Peru, 1994
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Atef Mohamed AbdelHamid Ali Hassn, "heterocyclization of thiouracil derivative: synthesis of thiazolopyrimidines, tetrazolopyrimidines and triazolopyrimidines of potential biological activity", elsevier, 2015
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Mohammed Aref Awad Allah Abu Zyd, "Synergistic positive effects of nano barium silicate on the hydration rate and phase composition of alkali-activated slag", Elsevier, 2022
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Ahmed Abdelmoniem Ahmed Amer, "Synthesis and characterization of some calcium aluminate phases from nano-size starting materials", 0366-3175/© 2020 SECV. Published by Elsevier Espana, ˜ S.L.U, 2020
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