UV–vis, IR and 1H NMR spectroscopic studies of some Schiff bases derivatives of 4-aminoantipyrine

Author(s):  
Raafat M. Issa ◽  
Abdalla M. Khedr ◽  
Helen F. Rizk
2020 ◽  
Vol 5 (2) ◽  
pp. 113-119
Author(s):  
R. Gupta ◽  
A. Mathur

Diphenyl antimony(III) and triphenylantimony(V) derivatives of Schiff bases having general formulae Ph2Sb[OC(R)CHC(R′)NC6H5] and Ph3Sb[OC(R)CHC(R′)NC6H5]2 (where R=R′=CH3,C6H5; R = CH3, R′=C6H5), respectively have been prepared. Trivalent organoantimony derivatives have been synthesized by the reaction of RC(O)CHC(R′)-NH(C6H5) with Ph3Sb in 1: 1 molar ratio whereas, pentavalent organoantimony derivatives have been synthesized by the reaction of Ph3SbBr2 with Na[OC(R)CHC(R′)N(C6H5)] in 1:2 molar ratio, respectively in benzene solution. The structures of these complexes have been assigned on the basis of chemical analysis, molecular weight measurements and spectral (IR 1H & 13C NMR) studies. Schiff base (R = CH3, R′ = C6H5 ) and its corresponding organoantimony(III) and antimony(V) compounds were used for evaluation of reproductive physiological activity in male rats and for studying antifertility activity. Compounds were administrated orally for 30 days to male albino rats and after termination of treatment, animal tissue and serum were taken for histopathological, biochemical and hematological parameters


2020 ◽  
Vol 23 (7) ◽  
pp. 568-586
Author(s):  
Samy M. Ahmed ◽  
Ibrahim A. Shaaban ◽  
Elsayed H. El-Mossalamy ◽  
Tarek A. Mohamed

Objective: Two novel Schiff bases named, 2-((2-Hydroxybenzylidene)amino)-4,5,6,7- tetrahydrobenzo[b] thiophene-3-carbonitrile (BESB1) and 2-((Furan-2-ylmethylene)amino)-4,5,6, 7-tetrahydro-benzo[b]thiophene-3-carbonitrile (BESB2) were synthesized. Methods: The structures were characterized based on CHN elemental analysis, mid-infrared (400– 4000 cm-1), Raman (100-4000 cm-1), 1H NMR, mass and UV-Vis spectroscopic measurements. In addition, quantum mechanical calculations using DFT-B3LYP method at 6-31G(d) basis set were carried out for both Schiff bases. Initially, we have carried out complete geometry optimizations followed by frequency calculations for the proposed conformational isomers; BESB1 (A–E) and BESB2 (F–J) based on the orientations of both CN and OH groups against the azomethine lonepair (NLP) in addition to the 3D assumption. Results: The computational outcomes favor conformer A for BESB1 in which the C≡N and OH moieties are cis towards the NLP while conformer G is preferred for BESB2 (the C≡N/furan-O are cis/trans towards the NLP) which was found consistent with the results of relaxed potential energy surface scan. Aided by normal coordinate analysis of the Cartesian coordinate displacements, we have suggested reliable vibrational assignments for all observed IR and Raman bands. Moreover, the electronic absorption spectra for the favored conformers were predicted in DMSO solution using TD-B3LYP/6-31G(d) calculations. Similarly, the 1H NMR chemical shifts were also estimated using GIAO approach implementing PCM including solvent effects (DMSO-d6). Conclusion: Proper interpretations of the observed electronic transition, chemical shifts, IR and Raman bands were presented in this study.


1982 ◽  
Vol 13 (36) ◽  
Author(s):  
F. CALDERAZZO ◽  
S. FREDIANI ◽  
B. R. JAMES ◽  
G. PAMPALONI ◽  
K. J. REIMER ◽  
...  

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