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  • Structure and vibration spectra of N-4-chlorobenzoyl–N′-4-methoxylphenylthiourea
  • Add time:07/16/2019         Source:sciencedirect.com

    The structure of the N-4-chlorobenzoyl–N′-4-methoxylphenylthiourea (C15H13N2OClS, Mr=320.79) derived from X-ray diffraction on single crystal has been presented. The crystals are monoclinic, space group: P21/n (#14), a=12.125(2), b=6.3650(6), c=19.755(3) Å, β=76.800(6)°, V=1484.3(3) Å3, Z=4. FT-IR spectrum has been determined. The interactions of intramolecular and intermolecular hydrogen bonds have been discussed. Density functional theory (DFT) (B3LYP) methods have been used to determine the structure and energies of stable conformers. Minimum energy conformations are calculated as a function of the torsion angle θ (C7N1C8N2) varied every 30°. The optimized geometry corresponding to crystal structure is the most stable conformation. This has partly been attributed to intramolecular hydrogen bonds. With the basis sets of the 6-311G∗ quality, the DFT calculated bond parameters and harmonic vibrations are predicted in a very good agreement with experimental data.

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    Prev:Spectroscopic and magnetic investigations of some transition metal complexes with N-4-methoxyphenyl-N-4-chlorobenzoyl hydrazide as ligand
    Next: Synthesis and biological effects of novel 2-amino-3-(4-chlorobenzoyl)-4-substituted thiophenes as allosteric enhancers of the A1 adenosine receptor)

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