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Investigation of hydrogen bonding and self-association in neat HCONH2 and the binary mixture (HCONH2+CH3OH) by concentration dependent Raman study and ab initio calculations

✍ Scribed by Animesh K Ojha; Sunil K Srivastava; J Koster; M.K Shukla; J Leszczynski; B.P Asthana; W Kiefer


Publisher
Elsevier Science
Year
2004
Tongue
English
Weight
314 KB
Volume
689
Category
Article
ISSN
0022-2860

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✦ Synopsis


Raman spectra of neat formamide (HCONH 2 ) and its binary mixture (HCONH 2 ΓΎ CH 3 OH) with hydrogen donor solvent, methanol (CH 3 OH) were investigated using a sensitive scanning multichannel detection scheme, which is simultaneously more precise also, especially when the observed Raman line profile has multiple component bands. The spectra in the two regions, namely 1200-1500 and 1500-1800 cm 21 were recorded with varying mole fractions of the reference molecule, HCONH 2 , from 0.1 to 0.9. The spectra in the region 1200-1500 cm 21 show a broad band at , 1312 cm 21 , which shows a peculiar concentration dependence, and a relatively sharp peak at , 1392 cm 21 , whose peak position is not influenced by concentration. The spectra in the region 1500-1800 cm 21 also show two peaks, one at ,1593 cm 21 and the other one at , 1668 cm 21 which are assigned to NH 2 bending and n(CyO) stretching vibrations, respectively. Both these Raman bands show an appreciable upshift of , 15 -20 cm 21 and the one at , 1668 cm 21 has also a distinct asymmetry towards higher wavenumber. The optimized geometries and vibrational wavenumbers of various normal modes for neat formamide as well as its hydrogenbonded complexes were also calculated using ab initio theory at the MP2 level. The results have been used to understand and explain the concentration dependent changes in the spectral features in terms of hydrogen bonding and self-association.


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Concentration-dependent Raman study of n
✍ Animesh K. Ojha; Sunil K. Srivastava; B. P. Asthana; Ranjan K. Singh πŸ“‚ Article πŸ“… 2007 πŸ› John Wiley and Sons 🌐 English βš– 263 KB πŸ‘ 1 views

The isotropic and anisotropic parts of the Raman spectra of NH 2 bending and n(C O) stretching modes of HCONH 2 in a hydrogen-bonding solvent, methanol, at different concentrations have been analyzed carefully in order to study the noncoincidence effect (NCE). In neat HCONH 2 , the experimentally me