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Electronic properties of environmental pollutants and their mutagenic activity: Nitro derivatives of azaphenanthrenes. | LitMetric

Electronic properties of environmental pollutants and their mutagenic activity: Nitro derivatives of azaphenanthrenes.

Chemosphere

Institute of Chemistry, Technology and Metallurgy, University of Belgrade, Studentski trg 14-16, 11 000 Belgrade, Serbia.

Published: September 2015

AI Article Synopsis

  • The study explores the physico-chemical properties of various nitroazaphenanthrene isomers using Density Functional Theory (DFT), focusing on factors like geometry, stability, ionization potential, and vibrational characteristics.
  • The findings highlight that certain averaged molecular properties, such as dipole moment and polarizability, are closely linked to the structure of the isomers.
  • A strong correlation (R=1.00) is found between Raman activity values and mutagenic activity against a specific bacterial strain, indicating key influences of molecular forces on mutagenic pathways.

Article Abstract

The physico-chemical properties of nitroazaphenanthrene isomers: 4-nitro-9-azaphenanthrene (4-N-9-Aph), 5-nitro-9-azaphenanthrene (5-N-9-Aph), 6-nitro-4-azaphenanthrene (6-N-4-Aph), 8-nitro-1-azaphenanthrene (8-N-1-Aph), and 8-nitro-4-azaphenanthrene (8-N-4-Aph) have been investigated theoretically using Density Functional Theory (DFT) calculations. Equilibrium geometries, relative stability, ionization potentials, electron affinities, molecular electrostatic potentials, dipole moments, electric polarizabilities, and vibrational properties of these isomers are presented. Averaged O-N-C-C dihedral angle, dipole moment, polarizability, the summation of IR intensities (∑IIR) and the summation of Raman activities (∑ARaman) over all 3N-6 vibrational degrees of freedom are sensitive to the structure of isomers. A very good linear relationship between ∑ARaman values (R=1.00) and the Salmonella typhimurium strain TA98(-S9) mutagenic activity of the investigated nitroazaphenanthrene isomers (Tokiwa et al., 2003) reveals a very important role of inductive and dispersive forces on the mutagenic pathways of the investigated isomers.

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Source
http://dx.doi.org/10.1016/j.chemosphere.2015.04.073DOI Listing

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