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Molecular Structure and Electronic Properties of Triolein Molecule under an External Electric Field Related to Streamer Initiation and Propagation

机译:与流光引发和传播有关的外电场作用下三油精分子的分子结构和电子性质

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Natural ester has been widely studied as an alternative dielectric liquid to mineral oil in recent years. Unsaturated triacylglycerol molecules are the main components of natural ester; therefore, in this paper, we investigate the molecular structure and electronic properties of the triolein molecule, an oleic-type triacylglycerol molecule, as a representative component of natural ester oils. The effects of external electric fields at the electric field intensity related to streamer initiation and propagation on the bond lengths, dipole moment, total energy, infrared spectra, and orbital energy of the triolein molecule are investigated using density functional theory (DFT). In addition, the excitation energies, transition wavelengths, and oscillator strengths of the first eight excited states of the triolein molecule under external electric fields are calculated by time-dependent DFT. The results show that the bond lengths, dipole moments, total energy, and infrared spectra change obviously under external electric fields. With increasing external electric field intensity, the energy of the highest occupied molecular orbital increases, and the gap between that and the energy of the lowest unoccupied molecular orbital decreases, which make the molecule susceptible to excitation. The calculations contribute to an understanding of the causes behind the degradation of the insulation properties of natural ester oils.
机译:近年来,天然酯已被广泛用作矿物油的替代介电液体。不饱和的三酰基甘油分子是天然酯的主要成分。因此,在本文中,我们研究了油酸型三酰基甘油分子三油精分子作为天然酯油的代表性成分的分子结构和电子性能。使用密度泛函理论(DFT)研究了外部电场在与流光引发和传播有关的电场强度上对油酸分子的键长,偶极矩,总能量,红外光谱和轨道能的影响。另外,在外部电场下,三油精分子的前八个激发态的激发能,跃迁波长和振荡强度通过时变DFT计算得出。结果表明,在外电场作用下,键长,偶极矩,总能量和红外光谱变化明显。随着外部电场强度的增加,最高占据分子轨道的能量增加,并且其与最低未占据分子轨道的能量之间的间隙减小,这使得分子易于激发。这些计算有助于理解天然酯油绝缘性能下降的原因。

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