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  • Experimental and theoretical study of the structure of N,N-DIMETHYL-4-NITROANILINE (cas 100-23-2) derivatives as model compounds for non-linear optical organic materials
  • Add time:07/19/2019         Source:sciencedirect.com

    Molecular and crystal structure of a series of derivatives of N,N-dimethyl-4-nitroaniline has been studied by both X-ray diffraction method and high-level ab initio calculations. According to these data, the dimethylamino groups were found to have a trigonal-pyramidal configuration and are considerably turned with respect to the ring plane in all molecules having a substituent in the ortho-position; on the contrary, this group is planar in the meta-substituted molecules. Topological analysis of the electron density function for all molecules studied within the framework of Bader's ‘atoms in molecules’ (AIM) theory revealed that introduction of a substituent into the ortho- or meta-position of the ring results in increasing of the contribution of the resonance forms different from the quinoid one. Contribution of the latter form is predominant for the structure of N,N-dimethyl-4-nitroaniline (1). Topological analysis of the electron density distribution was used to explain a decreasing of the molecular hyperpolarisabilites of the ortho- and meta-substituted compounds as compared with those for 1.

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    Next: In situ FT-IR spectroelectrochemical study of the reduction of 1,4-DINITROBENZENE (cas 100-25-4) in room-temperature ionic liquids)

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