24
Views
1
CrossRef citations to date
0
Altmetric
Articles

Determination of the Inhibitory Power Exerted by Copper (II) Complexes Derived from of the Schiff Bases Against to Certain Fungal Species of Fusarium

, , &
Pages 803-812 | Received 19 Mar 2018, Accepted 06 Nov 2018, Published online: 27 Dec 2018

References

  • Canpolat, E. and Kaya, M. (2005a). Studies on Mononuclear Chelates Derived from Substituted Schiff Base Ligands (Part3). Synthesis and Characterization of a New 5-Nitrosalicyliden-p-amino- acetophenoneoxime and Its Complexes with Co(II), Ni(II), Cu(II) and Zn(II). Russ. J. Coord. Chem, 31(6): 415–419.
  • Canpolat, E. and Kaya, M. (2005b). Studies on Mononuclear Chelates Derived from Substituted Schiff Base Ligands (Part4). Synthesis and Characterization of a New 5-Hydroxysalicyliden-p- aminoacetophenoneoxime and Its Complexes with Co(II), Ni(II), Cu(II) and Zn(II). Turk J Chem, 29(4): 409–415.
  • Yazic, A. and Akgun, F. (2006). Synthesis and Characterization of two New Schiff base Ligands and their Complexes with Cobalt (II), Nickel(II) and Copper(II). Transition Metal Chemistry, 31(2): 152–156.
  • Chakraborty, A., Kumar, P., Ghosh, K. and Roy, P. (2010). Evaluation of a Schiff base copper complex compound as potent anticancer molecule with multiple targets of action, Eur. J. Pharmacol. 647(1–3): 1–12
  • Sheikh, J., Juneja, H., Ingle, V., Ali, P. and Hadda, T.B. (2013). Synthesis and in vitro biology of Co (II), Ni(II), Cu(II) and Zn(II) complexes of functionalized beta-diketone bearing energy buried potential antibacterial and antiviral O,O phamacophore sites . J. saudi Chem. Soc, 17(3): 269–276.
  • Katwal, R., Kaur, H. and Kapur, B.K. (2013). Applications of copper -Schiff’s base complexes: A Review. Sci. Revs. Chem. Commun, 3(1): 1–15.
  • Mohamed, G.G., Omar, M.M. and Hindy, A.M. (2006). Metal complexes of Schiff Bases: preparation, characterization and biological Activity. J. Turk. Chem, 30 (3): 361–382.
  • Singh, N.P., Saini, P., Kumar, A. and Kumar, K. (2014). Synthesis and spectroscopic characteri- zation of some novel Schiff base complexes of Ru(III) and their biological screening . Int. J. Sci. Eng. Res, 5: 557–561.
  • Xavier, A., Gobu, P. and Srividhya, N. (2015a). Schiff base and its transition metal comp- lexes. International Journal of Multidisciplinary Research and Development, 2(5): 134–138.
  • Xavier, A., Gopu, P., Akila B. and Suganya, K. (2015b). Synthesis and Characterization of Schiff base from 3, 5-Di chloro Salicylaldehyde with 4-Bromoaniline and 4-Aminobenzoic acid and its 1st Row Transition Metal complexes. International journal innovative research & development, 4(8): 384–396.
  • Gopu, P. and Xavier, A. (2015). Synthesis and Characterization of 4-(3-bromo-5-chloro-2- hydroxybenzlidimino) Benzoic Acid and its Transition Metal Complexes. Int. J. Sci. Res, 4(8): 1491–1495.
  • Summerell, B.A., Salleh, B. and Leslie, J.F. (2003). A Utilitarian Approach to Fusarium identification, Plan Disease. 87(2): 117–128.
  • Yazar, S. and Omurtag, G.Z. (2008). Fumonisins, Trichothecenes and Zearalenone in Cereals. Int. J. Mol. Sci. 9(11): 2062–2090.
  • Kiruthikajothi, K. and Chandramohan, G. (2013). Synthesis and evaluation of insecticide efficiency of copper complexes against eriophyid mite, Aeria guerreronis. Int. Curr. Microbiol. App. Sci, 2(12): 24–28
  • Abdel-Latifa, S.A., Mansour, S.E. and Ibrahim, D.M. (2013). Spectroscopic, Thermal, Magnetic and conductimetric studies on some 7-hydroxy-4-methyl-8-(arylazo) coumarins and their complexes with some divalent transition metal ions. IOSR Journal of Applied Chemistry, 5(5): 48–58,
  • Joseyphus, R.S. and Nair, M.S. (2008). Antibacterial and Antifungal Studies on Some Schiff Base Complexes of Zinc (II). Mycobiology. 36(2): 93–98.
  • Emanfo, A.S.A., Sekou. D. and Fantodji. A. (2013). Fungal contamination of fodder consumed by the grasscutter (Thryonomys swinderianus) breedinig in suburban areas of Abidjan (COTE D’IVOIRE). Agronomie Africaine, 25(1): 53–60.
  • Hibar, K., Daami-Remadi, M. and EL-mahjoub, M. (2007). Effect of some Chemical and Biological Fungicides on Mycelial Growth and Disease Severity of Fusarium oxysporum f.sp. radicis-lycopersici. Tropicultura, 25(3): 146–152.
  • Quitroga, E.N., Sampietro, A.R. and Vattuone, M.A. (2001). Screening antifungal activities of selected medicinal plants, J. Ethnopharmcology. 74(1): 89–96.
  • Nasrin, D., Alam, M.A., Hossain, M.N. and Nazimuddin, M. (2013). Synthesis, Characteri- zation and Antimicrobial Activity of Metal Complexes of Schiff’s base Derived from S-benzyl- dithiocarbazate with 2-hydroxyacetophenone, Chem. J. 3l (1): 13–19.
  • Kumar, S., Dhar, D.N. and Saxena, P.N. (2009). Applications of Metal Complexes of Schiff Bases-A Review J. Sci. Ind. Res, 68(3): 181–187.
  • Hammer, Ø., Harper, D.A.T. and Ryan, P.D. (2001). Past: Paleontological Statistics Software package for Education and Data Analysis. Palaeontologia Electronica, 04(1): 1–9.
  • Canpolat, E. and Kaya, M. (2005). Studies on Mononuclear Chelates Derived from Substituted Schiff Base Ligands (Part 4): Synthesis and Characterization of a New 5-Hydroxysalicyliden-P-Aminoacetophenoneoxime and Its Complexes with Co(II), Ni(II), Cu(II) and Zn(II). Turk. J. Chem, 29: 409–415.
  • Chandra, S. and Sangeetika, J. (2004). EPR and electronic spectral studies on copper(II) complexes of some N-O donor ligands. Journal of Indian Chemical Society, 81(3): 203–206.
  • Tai, X., Yin, X., Chen, Q. and Tan, M. (2003). Synthesis of Some Transition Metal Complexes of a Novel Schiff Base Ligand Derived from 2,2’-bis(p-Methoxyphenylamine) and Salicylic- aldehyde. Molecules, 8(5): 439–443.
  • Canpolat, E., Kaya, M. and Oztürk, O.F. (2007). Studies on mononuclear chelates derived from substituted Schiff-base ligands (part 6): synthesis and characterization of a new 3-ethoxy- salicyliden-p-aminoacetophenoneoxime and its complexes with cobalt (II), nickel(II), copper(II) and zinc(II). Journal of Coordination Chemistry, 60(23): 2621–2627.
  • Sharma, A. and Shah, M. (2013). Synthesis and Characterization of some Transition metal complexes derived from Bidentate Schiff Base Ligand. Journal of Applied Chemistry, 3 (5): 62–66.
  • Rehman, W., Saman, F. and Ahmad, I. (2008). Synthesis, characterization and biological study of some biologically Potent Schiff base Transition metal complexes, Russ. J. Coord. Chem 34(9): 678–682.
  • Almi, S., Benakcha, R. and Barkat, D. (2016). Extraction Behavior of Copper (II) With Salicylidene Aniline and Salicylidene Toluidine Isomers in Chloroform From Sulfate Medium. Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry. 46(2): 274–279.
  • Mazumder, U.K., Gupta, M., Bera, A., Bhattacharya, S., Karki, S., Manikandan, L. and Patra, S. (2003). Synthesis, antitumour and antibacterial activity of some Ru(bpy) 2+/4-substitued thiosemicarbazide complexes. Indian J. Chem. 42(2): 313–317.
  • Abu-khadra, A.S., Farag, R.S. and Abdel-Hady, A.M. (2016). Synthesis, characterization and antimicrobial Activity of Schiff base (E)-N-(4-(2-Hydroxybenzylideneamino) phenylsulfonyl) Acetamide Metal Complexes, American. J. Analyt. Chem. 7(3): 233–245.
  • Neelakantan, M.A., Esakkiammal, M., Mariappan, S.S., Dharmaraja, J. and Jeyakumar, T. (2010). Synthesis, characterization and Biocidal Activities of some Schiff Base Metal Complexes, Indian. J. Pharm. Sci. 72(2): 216–222.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.