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Substituent Effects on the Edge-to-Face Aromatic Interactions

机译:取代基对边缘到表面芳香相互作用的影响

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摘要

The edge-to-face interactions for either axially or facially substituted benzenes are investigated by using ab initio calculations.The predicted maximum energy difference between substituted and unsubstituted systems is ~0.7 kcal/mol (~1.2 kcal/mol if substituents are on both axially and facially substituted positions).In the case of axially substituted aromatic systems,the electron density at the para position is an important stabilizing factor,and thus the stabilization/destabilization by substitution is highly correlated to the electrostatic energy.This results in its subsequent correlation with the polarization and charge transfer.Thus,the stabilization/destabilization by substitution is represented by the sum of electrostatic energy and induction energy.On the other hand,the facially substituted aromatic system depends on not only the electron-donating ability responsible for the electrostatic energy but also the dispersion interaction and exchange repulsion.Although the dispersion energy is the most dominating interaction in both axial and facial substitutions,it is almost canceled by the exchange repulsion in the axial substitution,whereas in the facial substitution,together with the exchange repulsion it augments the electrostatic energy.The systems with electron-accepting substituents (NO_2,CN,Br,Cl,F) favor the axial substituent conformation,while those with electron-donating substituents (NH_2,CH_3,OH) favor the facial substituent conformation.The interactions for the T-shape complex systems of an aromatic ring with other counterpart such as H_2,H_2O,HCI,and HF are also studied.
机译:通过从头算计算研究了轴向或表面取代苯的边对面相互作用。取代和未取代系统之间的预测最大能量差为〜0.7 kcal / mol(如果两个轴向上都存在取代基,则约为1.2 kcal / mol)在轴向取代的芳族体系中,对位的电子密度是重要的稳定因子,因此取代引起的稳定/去稳定化与静电能高度相关,这导致其随后的相关性因此,取代基的稳定/去稳定化作用由静电能和感应能之和表示。另一方面,表面取代的芳族体系不仅取决于负责静电的电子给体能力。能量,但也有色散相互作用和交换排斥力。 n能量是轴向和面部置换中最主要的相互作用,几乎被轴向置换中的交换排斥所抵消,而在面部置换中,它与交换排斥一起增加了静电能。取代基(NO_2,CN,Br,Cl,F)有利于轴向取代基构象,而带有供电子取代基(NH_2,CH_3,OH)的则有利于表面取代基构象。芳族化合物T形络合物的相互作用还研究了与H_2,H_2O,HCl和HF等其他对应物的环。

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  • 来源
    《Journal of the American Chemical Society 》 |2005年第12期| p.4530-4537| 共8页
  • 作者单位

    Contribution from the National Creative Research Initiative Center for Superfunctional Materials,Department of Chemistry,Division of Molecular and Life Sciences,Pohang University of Science and Technology,San 31,Hyojadong,Namgu,Pohang 790-784,Korea;

    Contribution from the National Creative Research Initiative Center for Superfunctional Materials,Department of Chemistry,Division of Molecular and Life Sciences,Pohang University of Science and Technology,San 31,Hyojadong,Namgu,Pohang 790-784,Korea;

    Contribution from the National Creative Research Initiative Center for Superfunctional Materials,Department of Chemistry,Division of Molecular and Life Sciences,Pohang University of Science and Technology,San 31,Hyojadong,Namgu,Pohang 790-784,Korea;

    Contribution from the National Creative Research Initiative Center for Superfunctional Materials,Department of Chemistry,Division of Molecular and Life Sciences,Pohang University of Science and Technology,San 31,Hyojadong,Namgu,Pohang 790-784,Korea;

    Contribution from the National Creative Research Initiative Center for Superfunctional Materials,Department of Chemistry,Division of Molecular and Life Sciences,Pohang University of Science and Technology,San 31,Hyojadong,Namgu,Pohang 790-784,Korea;

    Contribution from the National Creative Research Initiative Center for Superfunctional Materials,Department of Chemistry,Division of Molecular and Life Sciences,Pohang University of Science and Technology,San 31,Hyojadong,Namgu,Pohang 790-784,Korea;

    Contribution from the National Creative Research Initiative Center for Superfunctional Materials,Department of Chemistry,Division of Molecular and Life Sciences,Pohang University of Science and Technology,San 31,Hyojadong,Namgu,Pohang 790-784,Korea;

    Contribution from the National Creative Research Initiative Center for Superfunctional Materials,Department of Chemistry,Division of Molecular and Life Sciences,Pohang University of Science and Technology,San 31,Hyojadong,Namgu,Pohang 790-784,Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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