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首页> 外文期刊>Karbala International Journal of Modern Science >Molecular Structure Vibrational & Electronic Properties of Some Isatin Derivatives
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Molecular Structure Vibrational & Electronic Properties of Some Isatin Derivatives

机译:分子结构振动& 一些Isatin衍生品的电子性质

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摘要

In this study, Natural Bonding Orbitals (NBOs) were applied to isatin, 5?fluoroisatin, 5?chloroisatin, 5?methylisatin and 5?methoxyisatin using the Lee-Yang-Parr correlation functional B3LYP with 6?311++G(2d,2p) basis set. Natural bonding analysis was performed to consider the transfer interactions of intra-molecular charge, pre-hybridization and electron density within the isatin, 5?fluoroisatin, 5?chloroisatin, 5?methylisatin and 5?methoxyisatin. In natural bonding orbital analysis, the wave functions of the electrons were explicated in sets of occupied Lewis type terms, (bonds or lone pairs) and sets of unoccupied non?Lewis (anti?bond and Rydberg) localized natural bonding orbitals. The electron density between these orbitals was correlated to stabilize the interaction of donor-acceptor orbitals. Second-order Perturbation Theory was employed to evaluate the stabilization energies of all possible interactions between donor and acceptor orbitals in natural bonding orbitals. The aim was to study the properties of these series and to produce a molecular geometry description, hyper-conjugative interactions, natural bond orbital (NBO) analysis and the HOMO?LUMO energy gap-dependent properties that are important for the stability of structures. From the results, it can be noted that for all forms, the HOMO?LUMO energy gap values decreased by substitution for the 5?fluoroisatin, 5?chloroisatin, 5?methylisatin and 5?methoxyisatin compounds and, with the exception of the deprotonated form in all the compounds, leading to less stable molecules. The anion form of the 5?methoxyisatin compound and the cation form of the 5?fluoroisatin, in which the HOMO?LUMO energy gap values increased, became more stable. It also appeared that the 5?CH3- and 5?Cl groups caused an increase in the linear polarizability and anisotropic polarizability values in all forms; however, the 5?OCH3 and 5?F groups caused different effects in different forms. Furthermore, we concluded that the intramolecular hyper-conjugative interactions between bonded atoms changed by groups. These changes caused changes in the electron density values in the atoms, which in turn led to a change in the stabilization energy values of the isatin, 5?fluoroisatin, 5?chloroisatin, 5?methylisatin and 5?methoxyisatin.
机译:在本研究中,将天然粘合轨道(NBO)应用于Isatin,5?Fluyoisatin,5?氯沙坦,5?甲基脲和5?甲氧基胺,使用Lee-yang-Parr相关官能团B3Lyp,6→311 ++ G(2D, 2p)基础集。进行天然键合分析以考虑Inthular-Chight,杂交前杂交和电子密度的转移相互作用,5β氟胺,5β,5?甲基异素和5?甲氧基胺素。在天然键合轨道分析中,电子的波函数在占用的Lewis类型术语中被阐述,(粘合剂或孤方式)和一组未占用的非?Lewis(抗粘合和rydberg)局部的天然键合轨道。这些轨道之间的电子密度相关,以稳定供体 - 受体轨道的相互作用。采用二阶扰动理论来评估施主和受体轨道之间的所有可能相互作用的稳定能量。目的是研究这些系列的性质,并产生分子几何描述,超缀合物相互作用,天然键(NBO)分析和Homo?Lumo能量间隙依赖性,对结构稳定性很重要。从结果中,可以注意到,对于所有形式,Homo?Lumo能量间隙值通过替代为5?氟胺素,5β含蛋白,5?甲基脲和5?甲氧基胺素化合物,除去甲氧基胺化合物,还有异质在所有化合物中,导致不太稳定的分子。 5?甲氧基化合物的阴离子形式和5?氟胺素的阳离子形式,其中HomoΔlumo能量隙值增加,变得更稳定。它还似乎5?CH 3和5?C1组引起了所有形式的线性极化性和各向异性极化性值的增加;然而,5?OCH3和5?F组以不同的形式引起不同的效果。此外,我们得出结论,键合原子之间的分子内超缀合物的相互作用因基团而变化。这些变化导致原子中的电子密度值的变化,这反过来导致了Isatin,5?氟胺素,5β,5?甲基异素和5?甲氧基胺素的稳定能量值的变化。

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