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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Conformational stability, molecular orbital studies (chemical hardness and potential), vibrational investigation and theoretical NBO analysis of 4-tert-butyl-3-methoxy-2,6-dinitrotoluene
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Conformational stability, molecular orbital studies (chemical hardness and potential), vibrational investigation and theoretical NBO analysis of 4-tert-butyl-3-methoxy-2,6-dinitrotoluene

机译:构象稳定性,分子轨道研究(化学硬度和电势),振动研究和4-叔丁基-3-甲氧基-2,6-二硝基甲苯的理论NBO分析

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摘要

The FT-IR and FT-Raman spectra of 4-tert-butyl-3-methoxy-2,6-dinitrotoluene (musk ambrette) have been recorded in the regions 4000-400 cm~(-1) and 3500-100 cm~(-1), respectively. The total energy calculations of musk ambrette were tried for the possible conformers. The molecular structure, geometry optimization, vibrational frequencies were obtained by the density functional theory (DFT) using B3LYP and LSDA method with 6-311G(d,p) basis set for the most stable conformer "C1". The complete assignments were performed on the basis of the potential energy distribution (PED) of the vibrational modes, calculated and the scaled values were compared with experimental FT-IR and FT-Raman spectra. The observed and the calculated frequencies are found to be in good agreement. The stability of the molecule arising from hyper conjugate interactions and the charge delocalization has been analyzed using bond orbital (NBO) analysis. The HOMO and LUMO energy gap reveals that the energy gap reflects the chemical activity of the molecule. The dipole moment (μ), polarizability (α), anisotropy polarizability (?α) and first hyperpolarizability (β_(tot)) of the molecule have been reported. The thermodynamic functions (heat capacity, entropy and enthalpy) were obtained for the range of temperature 100-1000 K. Information about the size, shape, charge density distribution and site of chemical reactivity of the molecule has been obtained by mapping electron density isosurface with molecular electrostatic potential (MEP).
机译:在4000-400 cm〜(-1)和3500-100 cm〜范围内记录了4-叔丁基-3-甲氧基-2,6-二硝基甲苯(麝香短绒)的FT-IR和FT-拉曼光谱。 (-1)。尝试为可能的构型者计算麝香伞的总能量。使用B3LYP和LSDA方法,以6-311G(d,p)为最稳定构象体“ C1”,通过密度泛函理论(DFT)获得了分子结构,几何结构优化,振动频率。完整的分配是基于振动模式的势能分布(PED)进行计算的,并将标定值与实验FT-IR和FT-Raman光谱进行比较。发现观察到的频率和计算出的频率非常吻合。由超共轭相互作用和电荷离域引起的分子稳定性已使用键轨道(NBO)分析进行了分析。 HOMO和LUMO能隙表明该能隙反映了分子的化学活性。已经报道了分子的偶极矩(μ),极化率(α),各向异性极化率(Δα)和第一超极化率(β_(tot))。在100-1000 K的温度范围内获得了热力学函数(热容量,熵和焓)。通过将电子密度等值面映射为,可以获得有关分子的大小,形状,电荷密度分布和化学反应部位的信息。分子静电势(MEP)。

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