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首页> 外文期刊>Australian Journal of Chemistry: A Journal for the Publication of Original Research in All Branches of Chemistry >New Insights into the Origin of the cis-Configuration Preferences in 1,2-Dihaloethenes: The Importance of the Bonding Orbital Deviations
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New Insights into the Origin of the cis-Configuration Preferences in 1,2-Dihaloethenes: The Importance of the Bonding Orbital Deviations

机译:新的洞察于1,2-二卤代甲醚的顺式配置偏好的起源:粘接轨道偏差的重要性

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The origin of the preferences for the cis-configurations in 1,2-difluoroethene (1), 1,2-dichloroethene (2), and 1,2-dibromoethene (3) were explored by means of the G3MP2, LC-omega PBE and CCSD(T) methods with the 6-311+G** basis set on all atoms, and natural bond orbital interpretation. On the basis of the results obtained, the cis-configurations preferences decrease in going from compound 1 to compound 3. Effectively, the deletions of the hyperconjugative interactions from the Fock matrices of the cis- and trans-configurations of compound 1 lead to the increase of the trans-conformation stability (by similar to 6.11 kcal mol(-1)) compared with its corresponding cis-conformation. However, the Pauli exchange-type repulsion difference between the cis- and trans-configurations of compound 1 is in favour of the trans-configuration (by similar to 6.25 kcal mol(-1)), revealing that the stabilization energies associated with the hyperconjugative interactions do not compensate the destabilizations associated with the exchange component and dipole-dipole interactions. Importantly, the C=C bond paths in the cis-configuration of compound 1 are bent in essentially the same direction (towards the C-F bonds), leading to an increased overlap and a stronger C-C bond, whereas the C-C bond paths in the trans-configuration are bent in opposite directions. Accordingly, the co-operative stabilizations associated with the bending of the C=C bond paths (towards the C-F bonds) and total hyperconjugative generalized anomeric effect overcome the destabilizations associated with the exchange component and dipole-dipole interactions, leading to the preference of the cis-configuration in compound 1. The deletions of all the donor-acceptor electronic interactions from the Fock matrices of the cis- and trans-configurations of compounds 2 and 3 lead to the increase of the trans-conformation stabilities compared with their corresponding cis-conformations, revealing the determining impacts of the hyperconjugative interactions on the configurational preferences in compounds 2 and 3.
机译:通过G3MP2,LC-OMEGA PBE探索了1,2-二氟乙烯(1),1,2-二氯乙烯(2),1,2-二氯乙烯(2)和1,2-二溴乙烯(3)中的CIS型配置的起源和CCSD(T)的方法在所有原子和自然键轨道解释上设定了6-311 + G **。在获得的结果的基础上,顺式配置偏好于从化合物1到化合物3中的偏好降低。有效地,从CIS-和反式构造的CIS-和反式构造的套管基质缺失缺失化合物1的缺失导致增加与其相应的顺式构象相比,反式构象稳定性(通过类似于6.11kcal(-1))。然而,化合物1的顺式和反式构型之间的Pauli交换型排斥差异有利于反式构型(通过类似于6.25kcal摩尔(-1)),揭示与血管间相关的稳定能量交互不会补偿与交换组件和偶极偶极交互相关的稳定化。重要的是,化合物1的顺式构造中的C = C键槽在基本上是相同的方向(朝向CF键)弯曲,导致重叠的增加和较强的CC键,而CC键合配置在相反的方向上弯曲。因此,与C = C键槽弯曲的弯曲相关的共术稳定(朝向CF键)和总超强稳定性的广义的异射效果克服了与交换组分和偶极偶极相互作用相关的稳定化,导致偏好化合物中的顺式配置1.与它们相应的CIS相比,来自化合物2和Trant-Concepureation的所有施主 - 接受者电子相互作用的缺失,与其相应的顺式相应的反相稳定性增加构象,揭示超强相互作用对化合物2和3中的配置偏好的影响。

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