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  • Mid- and near-IR study of the hydrogen bond interaction between N-METHYLDIACETAMIDE (cas 1113-68-4) and phenols
  • Add time:08/13/2019         Source:sciencedirect.com

    The hydrogen bond complexes between phenol derivatives (pKa = 10.20−8.20) and N-METHYLDIACETAMIDE (cas 1113-68-4) (NMD) are studied by mid- and near-IR spectroscopy in carbon tetrachloride solution. The equilibrium constants and enthalpies of complex formation are determined and the results suggest that the proton acceptor ability of NMD is lower than that of monocarbonyl bases. Complex formation results in decoupling of the ν(CO) vibration. The frequencies and intensities of the bonded ν(OH) vibration are determined for the fundamental and first overtone transition. Hydrogen bond formation results in a very weak increase of the mechanical anharmonicity and a strong decrease of the intensity of the first overtone of the OH stretching vibration. The first (μ1) and second (μ2) dipole moment derivatives are calculated. In this limited domain, a linear correlation is found between Δμ1 and Δμ2, the increase of the dipole moment derivatives resulting from hydrogen bond formation.

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    Prev:A ring-fission/C–C bond cleavage reaction with an N-alkyl-N-methyl-N-[(5-phenyl-1,2,4-oxadiazol-3-yl)methyl]amine
    Next: Mid- and near-infrared study of hydrogen bond complexes between phenols and N,N-dimethylformamide)

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