Synthesis, Characterization and Biological Activity Study for Some New Metals Complexes with (3Z,3'E)-3,3'-(((2E,5E)-hexane-2,5-diylidene)bis(hydrazine-2,1-diylidene))bis(indolin-2-one)

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Nuha Ayad Abd AL_Qadir
Naser Dheyaa Shaalan

Abstract

Our recent work displays the successful preparation of Schiff_bases that carried out between hexane-2,5-dione and 2 moles of (Z)-3-hydrazineylideneindolin-2-one forming in Schiff-bases-(L), Which in turn allowed combining with each of the next metal ions: (M2+) = Ni, Mn, Zn, Cu and Co forming complexes_ in high stability. The formation of resulting Schiff_ bases (L) is detected spectrally using LC_Mss which gave approximately matching results with theoretical incomes, 1HNMR proves the founding of doublet signal of (2H) for 2NH, FTIR indicates the occurrence of two interfered imine bands and UV-VIS mean is also indecates the formation of ligand. On the other hand, complexes-based-Schiff were characterized using the same spectral means that relied Schiff-bases_(L). Those means gave satisfactory results and proved the distinguishable geometries that suggested. Finally, and according to the antibiotic feature of Schiff-bases and its metal ions we have also examined such character against (-Bacteria and +Bacteria) giving an acceptable inhibition efficiency.

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Synthesis, Characterization and Biological Activity Study for Some New Metals Complexes with (3Z,3’E)-3,3’-(((2E,5E)-hexane-2,5-diylidene)bis(hydrazine-2,1-diylidene))bis(indolin-2-one). (2023). Ibn AL-Haitham Journal For Pure and Applied Sciences, 36(3), 231-244. https://doi.org/10.30526/36.3.3071
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Chemistry

How to Cite

Synthesis, Characterization and Biological Activity Study for Some New Metals Complexes with (3Z,3’E)-3,3’-(((2E,5E)-hexane-2,5-diylidene)bis(hydrazine-2,1-diylidene))bis(indolin-2-one). (2023). Ibn AL-Haitham Journal For Pure and Applied Sciences, 36(3), 231-244. https://doi.org/10.30526/36.3.3071

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References

Sousa, J.; Oliveira, D.R.; Lomonaco, D.; Correia, A.N.; Sousa, C.P.; de Lima Neto, P.; Mele, G. Structural, photophysical and electrochemical properties of a novel cardanol-based salophen ligand and its Mn (II) complex. Journal of Molecular Structure 2019, 1181, 279-286.‏

Khachatryan, G.E.; Mkrtchyan, N.I.; Gavalyan V.B. Antibacterial Ppoperties of new Chitosan based Schiff-base, International Journal of Advanced Research. 2018, 6,1187

Masoudi, M.; Behzad, M.; Arab, A.; Tarahhomi, A.; Rudbari, H.A.; Bruno, G. Crystal structures, DFT calculations and Hirshfeld surface analyses of three new cobalt (III) Schiff base complexes derived from meso-1, 2-diphenyl-1, 2-ethylenediamine. Journal of Molecular Structure 2016,1122,123-33.

Woźniczka, M.; Sutradhar, M.; Pombeiro, A.J.; Świątek, M.; Pająk, M.; Gą0dek-Sobczyńska, J.; Chmiela, M.; Gonciarz, W.; Pasternak, B.; Kufelnicki; A. Equilibria in Aqueous Cobalt (II)—Reduced Schiff Base N-(2-hydroxybenzyl) alanine System: Chemical Characterization, Kinetic Analysis, Antimicrobial and Cytotoxic Properties. Molecules 2020, 25(15),3462.

Salehi, M.; Rahimifar, F.; Kubicki, M.; Asadi, A. Structural, spectroscopic, electrochemical and antibacterial studies of some new nickel (II) Schiff base complexes. Inorganica Chimica Acta 2016, 443,28-35.

Al-Samraiy, F.M.; Jassim, A.H.; Muhyedeen, B.R. Synthesis and Ab Initio Study of some Biologically Important Thioamide Derivatives; Part I: Dithiooxamide, Di (n-propyl)-Dithiooxamide and their Copper (II), Nickel (II) and Pd (II) Complexes. European Journal of Scientific Research 2005,19(1), 38-57.‏

El-Sherif, A.A.; Aljahdali, M.S. protonation, complex-formation equilibria, and metal–ligand interaction of salicylaldehyde Schiff bases. Journal of Coordination Chemistry 2013,66(19),3423-68.

Elangovan, N.; Thomas, R.; Sowrirajan, S.; Manoj, K.P.; Irfan, A. Synthesis, Spectral Characterization, Electronic Structure and Biological Activity Screening of the Schiff Base 4-((4-Hydroxy-3-Methoxy-5-Nitrobenzylidene) Amino)-N-(Pyrimidin-2-yl) Benzene Sulfonamide from 5-Nitrovaniline and Sulphadiazene. Polycyclic Aromatic Compounds 2021, 1-18.‏

Olalekan, T.E.; Ogunlaja, A.S.; VanBrecht, B.; Watkins, G.M. Spectroscopic, structural and theoretical studies of copper (II) complexes of tridentate NOS Schiff bases. Journal of Molecular Structure 2016,1122,72-9.

Boceiri N.; Benabdallah, T.; Hadj Youcef, M.; Reffas, H. Synthesis and characterization of a novel series of amphiphilic mercapto-1, 2, 4-triazole Schiff base ligands: Investigation of their behavior in hydro-organic solutions. Journal of Surfactants and Detergents 2016,19(3),583-97.

Torki, M.; Tangestaninejad, S.; Mirkhani, V.; Moghadam, M.; Mohammadpoor‐Baltork, I. RuIII (OTf) SalophenCH2–NHSiO2–Fe: an efficient and magnetically recoverable catalyst for trimethylsilylation of alcohols and phenols with hexamethyldisilazane. Applied Organometallic Chemistry 2014, 28(4),304-9.

Al Zoubi, W.; Ko, Y.G. Organometallic complexes of Schiff bases: Recent progress in oxidation catalysis. Journal of Organometallic Chemistry 2016, 822,173-88.

Pradeep, C.P.; Das, S.K. Coordination and supramolecular aspects of the metal complexes of chiral N-salicyl-β-amino alcohol Schiff base ligands: Towards understanding the roles of weak interactions in their catalytic reactions. Coordination Chemistry Reviews 2013,257(11-12),1699-715.

Matsunaga, S.; Shibasaki, M. Multimetallic Schiff Base Complexes as Cooperative Asymmetric Catalysts. Science of synthesis 2013, 45, 421–437.

Casas, J. S.; Couce, M.D.; Sordo, J. Coordination Chemistry of Vitamin B6 and Derivatives: A Structural Overview. Coordination chemistry reviews 2012, 256, 3036–3062.

Al Zoubi, W.; Al Mohanna, N. Membrane Sensors Based on Schiff Bases as Chelating Ionophores–A Review. Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy 2014, 132,854-870.

Oiye, É.N.; Ribeiro, M.F.; Katayama, J.M.; Tadini, M.C.; Balbino, M.A.; Eleotério, I.C.; Magalhães, J.; Castro, A.S.; Silva, R.S.; da Cruz Júnior, J.W.; Dockal, E.R. Electrochemical sensors containing schiff bases and their transition metal complexes to detect analytes of forensic, pharmaceutical and environmental interest. A review. Critical Reviews in Analytical Chemistry 2019, 49(6),488-509.

Muslah, S.I.; Alabdali, A.J.; Shaalan, N.D. Synthesis of Binuclear Complexes of Cu (II), Ni (II) and Cr (III) Metal Ions Derived from Di-Imine Compound as Biterminal Binding Site Ligand. Al-Nahrain Journal of Science 2020,23(4),19-28.

Fouad, R. Synthesis and characterization of lanthanide complexes as potential therapeutic agents. Journal of Coordination Chemistry 2020, 73(14),2015-28.

Jawad, S.A..; Ahmed, H.A. Synthesis, Characterization and Study of Amide Ligand Type N2S2 and Metal Complexes with Di Valance Manganese, Zinc and tri Valance Iron. Annals of the Romanian Society for Cell Biology 2021, 25(3),8511-8520.

Hussein, K.A.; Shaalan, N. Synthesis, Characterization, and Antibacterial Activity of Lanthanide Metal Complexes with Schiff Base Ligand Produced from Reaction of 4, 4-Methylene Diantipyrine with Ethylenediamine. Indonesian Journal of Chemistry 2022,1-11.

Al Zoubi, W.; Kim, M.J.; On D.K.; Al-Hamdani, A.A.; Kim, Y.G.; Ko, Y.G. Effect of organic compounds and rough inorganic layer formed by plasma electrolytic oxidation on photocatalytic performance. Journal of Alloys and Compounds 2020, 823,153787.

Hussein, K.A.; Shaalan, N. Synthesis, spectroscopy and biological activities studies for new complexes of some lanthanide metals with Schiff’s bases derived from dimedone with 4-aminoantipyrine. Chemical Methodology 2021,6(2),103-13.

Obaid, S.M.H.; Sultan, J.S.; Al-Hamdani, A.A.S. Synthesis, characterization and biological efficacies from some new dinuclear metal complexes for base 3-(3,4-dihydroxy-phenyl)-2-[(2-hydroxy3-methylperoxy-benzylidene)-amino]-2-methyl propionic acid. Indonesian journal of chemistry 2020, 20 (6),1311–1322.

Halli, M.B.; Sumathi, R.B. Synthesis, physico-chemical investigations and biological screening of metal (II) complexes with Schiff base derived from naphthofuran-2-carbohydrazide and citral. Arabian journal of chemistry 2017, 10,S1748–S1759.

Sönmez, M.; Sogukomerogullari, H.G.; Öztemel, F.; Berber, İ. Synthesis and biological evaluation of a novel ONS tridentate Schiff base bearing pyrimidine ring and some metal complexes. Medicinal Chemistry Research 2014, 23 (7), 3451–3457.

Kareem, M.J.; Al‐Hamdani, A.A.S.; Jirjees, V.Y.; Khan, M.E.; Allaf, A.W.; Al Zoubi, W., Preparation, spectroscopic study of Schiff base derived from dopamine and metal Ni(II), Pd(II), and Pt(IV) complexes, and activity determination as antioxidants. Journal of physical organic chemistry 2021, 34 (3), 4156.

Hamza, I.S.; Mahmmoud, W.A.; Al-Hamdani, A.A.; Ahmed, S.D.; Allaf, A.W.; Al Zoubi W. Synthesis, characterization, and bioactivity of several metal complexes of (4-Amino-N-(5-methyl-isaxazol-3-yl)-benzenesulfonamide). Inorganic Chemistry Communications 2022,144,109776.