[4]
Elmali, A.; Kabak, N.; Elerman, Y. Keto-enol tautomerism, conformations and structure of N-(2-hydroxy-5- methylphenyl), 2-hydroxybenzaldehydeimine. J. Mol. Struct., 2000, 477(1-3), 151-158.
[6]
Yildiz, E.; Boztepe, H. Synthesis of novel acidic mono azo dyes and an investigation of their use in the textile industry. Turk. J. Chem., 2002, 26(6), 897-904.
[7]
Tweedy, B. Plant extracts with metal ions as potential antimicrobial agents. Phytopathology, 1964, 55, 910-914.
[9]
Renehan, M.F.; Schanz, H.J.; Mcgarrigle, E.M.; Dalton, C.T.; Daly, A. M and Gilheany, D.G. Unsymmetrical chiral salen Schiff base lig-ands; Synthesis and use in metal-based asymmetric epoxidation reactions. J. Mol. Catal. Chem., 2004, 231(1), 205-220.
[13]
Lekha, L.; Kanmaniraja, K.; Rajagopal, G.; Sivakumar, D.; Easwaramoorthi, D. Synthesis spectral characterization and antimicrobial as-sessment of Schiff Base ligand derived from amino acid and its transition metal complexes. Inter. J. Chem. Pharm. Sci, 2019, 2(1), 48-54.
[17]
Aghav, B.D.; Patil, S.K.; Lokhande, R.S. Synthesis, characterization and antibacterial properties of the ternary complexes of cerium with Schiff base derived from 4-aminoantipyrine and some amino acids. Adv. Appl. Sci. Res., 2015, 6(12), 37-43.
[21]
Asemave, K.; Anhwange, B.A.; Anom, T.J. Antibacterial Studies of Leucine Complexes of Fe (III)and Cu (II). Int. J. Sci. Res., 2015, 4(1), 1527-1529.
[24]
Rehman, M.; Imran, M.; Arif, M. Synthesis, Characterization and in vitro antimicrobial studies of Schiff-bases derived from Acetyl ace-tone and Amino acids and their Oxovanadium (IV) complexes. Afric. J. Appl. Chemistry, 2013, 1(4), 59-66.
[25]
Rajavel, R.; Vedanayaki, S.; Sandhanamalar, D.; Jayaseelan, P. Synthesis, Spectroscopic and antimicrobial studies of binuclear transition metal complexes with tetradentate Schiff base. J. Pharm. Biol. Chem. Sci., 2011, 2(3), 994-1001.
[26]
Patil, A.R.; Donde, K.J.; Raut, S.S.; Patil, V.R.; Lokhand, R.S. Synthesis, characterization and biological activity of mixed ligand Co (II) complexes of Schiff base 2-amino-4-nitrophenol-n-salicylidene with some amino acids. J. Chem. Pharm. Res., 2012, 4(2), 1413-1425.
[29]
Owalude, S.O.; Tella, A.C. Ohara, M.S.; Eke.; U.B. One Pot Synthesis 0f Group 6 Homo-Bimetallic Carbonyl Complexes Incorporating a Schiff Base and bidentate Phosphine Ligands. FUW Trends Sci. Technol. J., 2016, 1(2), 574-577.
[31]
Varshney, S.V.; Gupta, M.; Bansal, K.B.; Arshney, A.K.V. Synthesis, characterization, antimicrobial and insecticidal activity of some new ruthenium (III) complexes with Schiff bases of amino acids. Inorg. Chem., 2013, 8(5), 129-135.
[34]
Chandraleka, S. Chandramohan1, G.; Dhanasekaran, D.; Meenakumari, P.; Panneerselvam, A. Antifungal activity of amino acid schiff base Copper (II) complexes with phenanthroline and bipyridyl. Intern. J. Chemi. Anal. Sci., 2011, 2(10), 1235-1240.
[37]
Umar, Z.S. Iliyasu, M. Inusa. Metal Complexes of Mn (II) and Ni (II) with a schiff base ligand: preparation, characterization and biologi-cal activity. Int. J. Adv. Res. Sci. Eng. Technol., 2010, 5(5), 5919-5924.
[40]
Dhusiya, U.; Gautam, S.; Chandra, S.; Agrawal, S. Unsymmetrical mixed ligand (with 2, 3-Dihydroxypyridine and some amino acids) on complexation with metal ions Hg (II) and UO2 (II): Synthesis, spectral characterization and antifungal activity. J. Pharma. cal. Chem. Biol., 2016, 4(1), 1-12.
[44]
Sinthuja, S.A.; Shaji, Y.C.; Rose, G.L. Synthesis, characterization and evaluation of biological properties of transition metal chelates with schiff base ligands derived from glutaraldehyde with L-Leucine. Inter. J. Sci. Rese. Sci. Tec, 2018, 4(2), 582-582.
[45]
Azzouz, A.S.P.; Ali, R.T. Synthesis of schiff bases derived from benzaldehyde and salicylaldehyde with some amino acids by a new de-velop method. New J. Chem., 2010, 37, 158-168.
[56]
Al-Zaidi, B.H.; Hasson, M.M.; Ismail, A.H. New complexes of chelating Schiff base: Synthesis, spectral investigation, antimicrobial, and thermal behavior studies. J. App. Pharm. Sci., 2019, 9(04), 045-057.
[58]
Pervaiz, M.; Yousaf, M.; Sagir, M.; Pervaiz, A.; Naz, M.Y. Sspectral investigation of Schiff base monometallic transition metal complexes as bacteria and fungus inhibitors. T. App. Sci. Res., 2014, 9(3), 132-143.
[63]
Islam, S.; Salam, A. Preparation and characterization of copper iso-leucine complex and structure determination by computational calcula-tion. Int. J. Sci. Eng. Res., 2017, 8(11), 563-577.
[64]
Venugopala, K.; Jayashree, B. Synthesis of carboxamides of 2&-amino-4&-(6-bromo-3-coumarinyl) thiazole as analgesic and antiinflamma-tory agents. Indian J. Heterocycl. Chem., 2003, 12(4), 307-310.
[68]
Golcü, A.; Dolaz, M.; Serin, S. Spectrophotometric determination of propranolol as Cu (II), Ni (II) and Co (II) dithiocarbamate complexes. Turk. J. Chem., 2001, 25(4), 485-490.
[73]
Al-Shemary, P.K.; Al-Khazraji, A.A.; Lateef, A.F.S.J.M. Synthesis, characterization and antimicrobial activity studies of mixed- 1,10-phenanthroline Mn (II), Co (II), Cu (II), Ni (II)and Hg (II) complexes with schiff base[2,2'-(1Z,1'Z) - (biphenyl-4,4'- diylbis(azan-1-yl-1-ylidene)) bis(methan-1-yl-1-ylidene) diphenol]. Int. J. Sci. Res., 2016, 5(5), 1787-1793.
[77]
Sharma, N.; Chaturvedi, K. Iron (II), Nickel (II), Copper (II) and Zinc (II) complexes of 2,4-dinitro-6(pyridine-2-ylmethylamino) methylphenolate: Synthesis, characterization and Antimicrobial Activities. Int. J. Curr. Microbiol. Appl. Sci., 2005, 3(4), 65-74.
[78]
Al-Khafagy, A. Synthesis, characterization and biological study of some new metal-azo chelate complexes. J. Chem. Pharm. Res., 2016, 8(8), 296-302.
[86]
Sakthilatha, D.; Rajavel, D. Synthesis, characterization and biological studies of homobimetallic schiff Base Cu(II) and Ni(II) complexes. Chem. Sci. Trans., 2013, 2(3), 711-726.
[94]
Doughari, J.; Nuya, S. Vitro antifungal activity of deterium microcarpum. Pak. J. Med. Sci., 2008, 24(1), 91.
[95]
Al-Hamdani, A.; Balkhi, A.; Falah, A. Synthesis, Spectroscopic and biological activity Studies of Azo-Schiff base and Metal Complexes derived from 5-Methyltryptamine. J. for Basic Sci, 2013, 29(2), 21-41.
[98]
Mathur, S.; Tabassum, S. New homodi- and heterotrinuclear metal complexes of Schiff base compartmental ligand; interaction studies of copper complexes with calf thymus DNA. Cent. Eur. J. Chem., 2006, 4(3), 502-522.
[99]
Ali, S.; Taj, M.S.; Raheel, A.; Alelwani, W.; Tirmizi, S.A. A mini review on mixed chelation parameters. Biomed. J. Sci. Tech. Res., 2019, 20(4), 12287-12292.
[105]
Aliyu, H.N.; Mohammed, A.S. Synthesis and characterization of iron (ii) and nickel (ii) schiff base complexes. Bajopas, 2009, 2(1), 132-134.