首页> 外文期刊>Journal of molecular modeling >Ab initio study on the six lowest energy conformers of iso-octane: conformational stability, barriers to internal rotation, natural bond orbital and first-order hyperpolarizability analyses, UV and NMR predictions, spectral temperature sensitivity, and scaled vibrational assignment
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Ab initio study on the six lowest energy conformers of iso-octane: conformational stability, barriers to internal rotation, natural bond orbital and first-order hyperpolarizability analyses, UV and NMR predictions, spectral temperature sensitivity, and scaled vibrational assignment

机译:AB Initio关于异辛烷的六个最低能量符合子的研究:构象稳定性,内部旋转的屏障,天然键轨道和一阶的超极化性分析,UV和NMR预测,光谱温度灵敏度和缩放振动分配

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摘要

In this paper, we present the quantum electronic study of iso-octane, based on MP2 and B3LYP methods using the 6-311++G(d,p) basis set. In addition to conformational stability and internal rotation barriers studies, the delocalization energies associated with the internal charge transfer (ICT) within each of the six lowest energy conformers were evaluated using NBO analysis. With the aim to differentiate even more between these conformers, the energy gap between HOMO and LUMO orbitals, chemical softness, and first-order hyperpolarizability (nonlinear optics property) were evaluated. Similarly, their spectral behavior was investigated at different levels; the ultraviolet (UV) absorption bands were assigned using molecular orbitals data obtained by TD-B3LYP calculations with 6-311++G(d,p) basis set, while carbon C-13 NMR and proton H-1 signal peaks were assigned using the GIAO-B3LYP/6-311++G(d,p) method. In addition, the normal mode calculations of the most and least stable conformers using a scaled force field in terms of nonredundant local symmetry coordinates were carried out to approach the vibrational spectra temperature dependency.
机译:在本文中,我们使用6-311 ++ g(d,p)基础设定的MP2和B3LYP方法介绍了异辛烷的量子电子研究。除了构象稳定性和内部旋转屏障研究之外,使用NBO分析评估与六个最低能量簇中的每一个中的内部电荷转移(ICT)相关联的去透镜化能量。随着这些塑造者之间的更多的目的,评估同性恋者和Lumo轨道,化学柔软度和一阶超极化(非线性光学性质)之间的能隙。类似地,在不同层面调查了它们的光谱行为;使用通过TD-B3LYP计算的分子轨道数据分配紫外(UV)吸收带,使用6-311 ++ G(d,p)基础设定,而碳C-13 NMR和质子H-1信号峰值使用Giao-B3lyp / 6-311 ++ g(d,p)方法。另外,执行在非还原局部对称坐标方面使用缩放力场的最稳定符合子的正常模式计算,以接近振动谱温度依赖性。

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