期刊论文详细信息
Chemistry Central Journal
Spectral, thermal, molecular modeling and biological studies on mono- and binuclear complexes derived from oxalo bis(2,3-butanedionehydrazone)
Ahmed El-Asmy1  Bakir Jeragh1  Mayada Ali1 
[1] Chemistry Department, Faculty of Science, Kuwait University, Kuwait city, Safat 1360, Kuwait
关键词: X-ray crystallography;    Biological activity;    TGA;    Spectra;    Hydrazones;   
Others  :  1235057
DOI  :  10.1186/s13065-015-0135-y
 received in 2015-06-04, accepted in 2015-10-01,  发布年份 2015
PDF
【 摘 要 】

Background

Hydrazones and their metalcomplexes were heavily studied due to their pharmacological applications such as antimicrobial, anticonvulsant analgesic, anti-inflammatory and anti-cancer agents. This work aims to synthesize and characterize novel complexes of VO 2+ , Co 2+ , Ni 2+ , Cu 2+ , Zn 2+ , Zr 4+ and Pd 2+ions with oxalo bis(2,3-butanedione-hydrazone). Single crystals of the ligand have been grown and analyzed.

Results

Oxalo bis(2,3-butanedionehydrazone) [OBH] has a monoclinic crystal with P 1 21/n 1 space group. The VO 2+ , Co 2+ , Ni 2+ , Cu 2+ , Zn 2+ , Zr 4+and Pd 2+complexes have the formulas: [VO(OBH–H) 2 ]·H 2 O, [Co(OBH) 2 Cl]Cl·½EtOH, [Ni 2 (OBH)Cl 4 ]·H 2 O·EtOH, [Cu(OBH) 2 Cl 2 ]·2H 2 O, [Zn(OBH–H) 2 ], [Zr(OBH)Cl 4 ]·2H 2 O, and [Pd 2 (OBH)(H 2 O) 2 Cl 4 ]·2H 2 O. All complexes are nonelectrolytes except [Co(OBH) 2 Cl]Cl·½EtOH. OBH ligates as: neutral tetradentate (NNOO) in the Ni 2+and Pd 2+complexes; neutral bidentate (OO) in [Co(OBH) 2 Cl]Cl·½EtOH, [Zr(OBH)Cl 4 ]·2H 2 O and [Cu(OBH) 2 Cl 2 ]·2H 2 O and monobasic bidentate (OO) in the Zn 2+and VO 2+complexes. The NMR ( 1 H and13 C) spectra support these data. The results proved a tetrahedral for the Zn 2+complex; square-planar for Pd 2+ ; mixed stereochemistry for Ni 2+ ; square-pyramid for Co 2+and VO 2+and octahedral for Cu 2+and Zr 4+complexes. The TGA revealed the outer and inner solvents as well as the residual part. The molecular modeling of [Ni 2 (OBH)Cl 4 ]·H 2 O·EtOH and [Co(OBH) 2 Cl]Cl·½EtOH are drawn and their molecular parameters proved that the presence of two metals stabilized the complex more than the mono metal. The complexes have variable activities against some bacteria and fungi. [Zr(OBH)Cl 4 ]·2H 2 O has the highest activity. [Co(OBH) 2 Cl]Cl·½EtOH has more activity against Fusarium.

Conclusion

Oxalo bis(2,3-butanedionehydrazone) structure was proved by X-ray crystallography. It coordinates with some transition metal ions as neutral bidentate; mononegative bidentate and neutral tetradentate. The complexes have tetrahedral, square-planar and/or octahedral structures. The VO 2+and Co 2+complexes have square-pyramid structure. [Cu(OBH) 2 Cl 2 ]·2H 2 O and [Ni 2 (OBH)Cl 4 ]·H 2 O·EtOH decomposed to their oxides while [VO(OBH–H) 2 ]·H 2 O to vanadium. The energies obtained from molecular modeling calculation for [Ni 2 (OBH)Cl 4 ]·H 2 O·EtOH are less than those for [Co(OBH) 2 Cl]Cl·½EtOH indicating the two metals stabilized the complex more than mono metal. The Co(II) complex is polar molecule while the Ni(II) is non-polar.

【 授权许可】

   
2015 El-Asmy et al.

【 预 览 】
附件列表
Files Size Format View
20151231015641396.pdf 1705KB PDF download
Fig.3. 9KB Image download
Fig.2. 68KB Image download
Fig.1. 13KB Image download
【 图 表 】

Fig.1.

Fig.2.

Fig.3.

【 参考文献 】
  • [1]Despaigne AR, Parrilha GL, Izidoro JB, da Costa PR, dos Santos RG, Piro OE, Castellano EE, Rocha WR, Beraldo H. 2-Acetylpyridine- and 2-benzoylpyridine-derived hydrazones and their gallium(III) complexes are highly cytotoxic to glioma cells. Eur J Med Chem. 2012; 50:163.
  • [2]Ranford JD, Vittal JJ, Wang YM. Dicopper(II) complexes of the antitumor analogues acylbis(salicylaldehydehydrazones) and crystal structures of monomeric [Cu(2)(1,3-propanedioyl bis(salicylaldehydehydrazone))(H(2)O)(2)]. (ClO(4))(2)·3H(2)O and Polymeric-[{Cu(2)(1,6hexanedioylbis(salicylaldehydehydrazone))(C(2)H(5)OH)(2)}(m)()]. (ClO(4))(2)(m)()·m(C(2)H(5)OH). Inorg Chem. 1998; 37(6):1226.
  • [3]El-Asmy AA, Khalifa MI, Hassanian MM (2001) Synthesis and spectroscopic studies on novel transition metal complexes of 3-oximino-3-(2-pyridylcarbamoyl) propane-2-one. Synth React Inorg Met Org Chem 31(10):1787
  • [4]Jayawant AM, Stephenson RE, Ralph JD. 2,3-Butanedione monoxime cardioplegia: advantages over hyperkalemia in blood-perfused isolated hearts. Ann Thorac Surg. 1999; 67:618.
  • [5]Shallaby AM, Mostafa MM, Ibrahim KM, Moussa MNH. New uranyl(VI) complexes with hydrazone-oximes derived from aromatic acid hydrazides and biacetylmonoxime. Spectrochim Acta. 1984; 40A:999.
  • [6]Showalter HDH, Johnson JL, Hoftiezer JM et al (1987) Anthrapyrazole anticancer agents. Synthesis and structure-activity relationship against murine leukemias. J Med Chem 30:121
  • [7]Rostom SAF, Shalaby MA, El-Demellawy MA (2003) Polysubstituted pyrazoles—part 5. Synthesis of new 1-(4-chlorophenyl)-4-hydroxy-1H-pyrazole-3-carboxylic acid hydrazide analogs and some derived ring systems. A novel class of potential antitumor and anti-HCV agents. Eur J Med Chem 38:959
  • [8]El-Asmy AA, Khalifa MI, Rakha TH, Hassanian MM, Abdallah AM. Mono and trinuclear complexes of oximinoacetoacetyl-pyridine-4-phenylthiosemicarbazone. Chem Pharm Bull. 2000; 48(1):41.
  • [9]Latha KP, Vaidya VP, Keshavayya J. Comparative studies on metal complexes of 2-acetylnaphtho[2,1-b]furan oxime and 2-benzoylnaphtho[2,1-b]furan Oxime. Synth React Inorg Met Org Chem. 2004; 34:667.
  • [10]El-Asmy AA, Khalifa MI, Hassanian MM. Synthesis and characterization of transition metal complexes containing oxime, amido and thioamido groups. Ind J Chem. 2004; 43A:92.
  • [11]Al-Gammal OA, El-Asmy AA. Synthesis and spectral characterization of 1-(amino-N-phenylform)-4-ethylthiosemicarbazide and its metal complexes. J Coord Chem. 2008; 61(14):2296.
  • [12]Nandy M, Hughes DL, Rosair GM, Singh RKB, Mitra S. Synthesis, characterization, crystal structure and DNA binding of two copper(II)–hydrazone complexes. J Coord Chem. 2014; 67(20):3335.
  • [13]West DX, Ives JS, Bain GA, Liberta AE, Martiniz J, Ebert KH. Copper(II) and nickel(II) complexes of 2,3-butanedione bis(N(3)-substituted thiosemicarbazones). Polyhedron. 1997; 16:1895.
  • [14]El-Sayed AEM, Al-Fulaij OA, Elaasar A, El-Defrawy MM, El-Asmy AA. Spectroscopic characterization and biological activity of dihydrazone complexes: crystal structure of 2,3-butanedione bis(isonicotinyl-hydrazone). Spectrochim Acta. 2015; 135A:211.
  • [15]El-Tabl AS, El-Saied FA, Plass W, Al-Hakimi AN. Synthesis, spectroscopic characterization and biological activity of the metal complexes of the Schiff base derived from phenylaminoacetohydrazide and dibenzoylmethane. Spectrochim Acta. 2008; 71A:90.
  • [16]Jeragh B, El-Asmy AA. Spectroscopic and structural study of some 2,5-hexanedione bis(salicyloylhydrazone) complexes: crystal structures of its Ni(II) and Cu(II) complexes and N-(2,5-dimethyl-1H-pyrrol-1-yl)-2-hydroxybenzamide. Spectrochim Acta. 2014; 129A:307.
  • [17]Al-Fulaij OA, Jeragh BM, El-Sayed AE, El-Defrawy MM, El-Asmy AA. Chelation, spectroscopic characterization and crystal structure of 2,3-butanedione isonicotinylhydrazone: determination of Zr +4 after flotation separation. Spectrochim Acta. 2015; 136A:1834.
  • [18]Geary WJ. The use of conductivity measurements in organic solvents for the characterisation of coordination compounds. Coord Chem Rev. 1971; 7:81.
  • [19]Jeragh B, El-Asmy AA. Coordination of Fe(III), Co(II), Ni(II), Cu(II), Zn(II), Cd(II), Hg(II), Pd(II) and Pt(II) with 2,5-hexanedione bis(thiosemicarbazone), HBTS: crystal structure of cis-[Pd(HBTS)]Cl 2 and 1-(2,5-dimethyl-1H-pyrrol-yl)-thiourea. Spectrochim Acta. 2014; 130A:546.
  • [20]El-Asmy AA, El-Gammal OA, Saleh H. Spectral, thermal, electrochemical and analytical studies on Cd(II) and Hg(II) thiosemicarbazone complexes. Spectrochim Acta. 2008; 71A:39.
  • [21]Kumar A, Prasad R, Kociok-Köhn G, Molloy KC, Singh N. Synthesis, crystal structures and properties of sterically congested heteroleptic complexes of group 10 metal ions with p-tolyl sulphonyl dithiocarbimate and 1,2-bis (diphenylphosphino)ethane. Inorg Chem Commun. 2009; 12:686.
  • [22]Patel M, Patel C, Joshi H. Metal-based biologically active compounds: synthesis, characterization, DNA interaction, antibacterial, cytotoxic and SOD mimic activities. Appl Biochem Biotechnol. 2013; 169:1329.
  • [23]West DX, El-Sawaf AK, Bain GA. Metal complexes of N(4) substituted analogs of antiviral drug methisazone (1-methylisatin) thiosemicarbazones. Transit Met Chem. 1998; 23:1.
  • [24]Downes JM, Whelan J, Bosnich B. Inorganic reactions and methods. Inorg Chem. 1981; 20:1081.
  • [25]Ketcham KA, Swearingen JK, Castineiras A, Garcia I, Bermejo E, West DX. Iron(III), cobalt(II, III), copper(II) and zinc(II) complexes of 2-pyridineformamide 3-piperidylthiosemi-carbazone. Polyhedron. 2001; 20:3265.
  • [26]Amer S, El-Wakiel N, El-Ghamry H. Synthesis, spectral, antitumor and antimicrobial studies on Cu(II) complexes of purine and triazole Schiff base derivatives. J Mol Strut. 2013; 1049:326.
  • [27]Lehmann U, Lach J, Loose C, Hahn T, Kersting B, Kortus J. Binuclear nickel complexes with an edge sharing bis(square-pyramidal) N 3 Ni(μ-S 2 )NiN 3 core: synthesis, characterization, crystal structure and magnetic properties. J Dalton Trans. 2013; 42:987.
  • [28]Perera SD, Fernandez-Sanchez JJ, Shaw BL. Activation of C–X (X=Cl or Br) bonds in 2-halobenzaldehydes as their 2-pyridylhydrazone derivatives: oxidative addition to tungsten(0) to give aryl–tungsten(II) complexes. Inorg Chim Acta. 2001; 325:175.
  • [29]Amendola V, Boiocchi M, Brega V, Fabbrizzi L, Mosca L. Octahedral copper(II) and tetrahedral copper(II) double-strand helicates: chiral self-recognition and redox behavior. Inorg Chem. 2010; 49:997.
  • [30]El-Dissouky A, Al-Fulaij O, Awad MK, Rizk S. Synthesis, characterization, and biological activity studies of copper(II)–metal(II) binuclear complexes of dipyridylglyoxal bis(2-hydroxybenzoyl hydrazone). J Coord Chem. 2010; 63:330.
  文献评价指标  
  下载次数:47次 浏览次数:50次