4.6 Article

Structural confirmation of biorelevant molecule N-iso-butyl, S-2-nitro-1-phenylethyl dithiocarbamate in gas phase and effect of fluorination

期刊

CHEMICAL PHYSICS LETTERS
卷 762, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.cplett.2020.138124

关键词

Organosulfur compounds; DFT; IR; Raman; NBO

资金

  1. UGC India [F.4-2/2006 (BSR)/PH/19-20/0069]
  2. DST-SERB, India [EMR/2016/005266]
  3. CSIR India [09/013/0858/2018-EMR-I]

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The study reported the synthesis, structural confirmation, thermodynamics and vibrational spectroscopic studies of N-iso-butyl, S-2-nitro-1-phenylethyl dithiocarbamate, discovering five low lying energy structures. The effects of fluorination on the most stable conformer, as well as normal coordinate analysis and natural bond orbital analysis, were investigated. Different thermodynamical quantities were also studied.
The present manuscript reports the synthesis, structural confirmation, thermodynamics and vibrational spectroscopic studies of an important biorelevant molecule, named N-iso-butyl, S-2-nitro-1-phenylethyl dithiocarbamate in the gas phase. We have found a total of five low lying energy structures of N-iso-butyl, S-2-nitro-1phenylethyl dithiocarbamate in the present investigation. All the theoretical computations were done at DFT/ B3LYP/6-31++G(d,p) level. The FTIR spectrum of this molecule was recorded in the spectral range of 4000-400 cm(-1) and this correlates well with the theoretical spectra of energetically most preferred conformer. The effect of fluorination on the structural parameters and vibrational frequencies of the most stable conformer is also investigated. The normal coordinate analysis was employed to calculate the potential energy distributions of the most stable conformer and the fluorinated structure. Moreover, we have also performed the natural bond orbital analysis (NBO) for the most stable conformer and the fluorinated structure to corroborate the stability of the electronic structure of both the molecules. The different thermodynamical quantities viz entropy, specific heat, free energy and thermal energy are also investigated.

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