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环境污染物的电子特性及其诱变活性:氮杂菲的硝基衍生物

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

作者信息

Ostojić Bojana D, Đorđević Dragana S

机构信息

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

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

出版信息

Chemosphere. 2015 Sep;135:319-24. doi: 10.1016/j.chemosphere.2015.04.073. Epub 2015 May 15.

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.

摘要

硝基氮杂菲异构体的物理化学性质

4-硝基-9-氮杂菲(4-N-9-Aph)、5-硝基-9-氮杂菲(5-N-9-Aph)、6-硝基-4-氮杂菲(6-N-4-Aph)、8-硝基-1-氮杂菲(8-N-1-Aph)和8-硝基-4-氮杂菲(8-N-4-Aph)已通过密度泛函理论(DFT)计算进行了理论研究。给出了这些异构体的平衡几何结构、相对稳定性、电离势、电子亲和势、分子静电势、偶极矩、电极化率和振动性质。所有3N - 6个振动自由度上的平均O - N - C - C二面角、偶极矩、极化率、红外强度总和(∑IIR)和拉曼活性总和(∑ARaman)对异构体的结构敏感。∑ARaman值(R = 1.00)与所研究的硝基氮杂菲异构体的鼠伤寒沙门氏菌TA98(-S9)诱变活性之间非常好的线性关系(Tokiwa等人,2003年)揭示了诱导力和色散力在所研究异构体的诱变途径中非常重要的作用。

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