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首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Substituent effect in n-hexanes and n-hexatrienes based on core-electron binding energies calculated with density-functional theory
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Substituent effect in n-hexanes and n-hexatrienes based on core-electron binding energies calculated with density-functional theory

机译:基于密度泛函理论计算的基于核电子结合能的正己烷和正己三烯中的取代基效应

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摘要

It was shown that core-electron binding energy (CEBE) is a very convenient quantity to monitor substituent effect at each carbon atom in a substituted n-hexane (1-X-hexane), a chain sigma-system, and a substituted n-hexatriene (1-X-hexatriene), a chain pi-system. The core-electron binding energy was calculated using the density-functional theory with a scheme: Delta E-KS(PW86-PW91)/TZP + C-ret//HF/6-31G* The calculated CEBE(i) of ith orbital is equal to the sum of the ionization energy (-epsilon(i)) due to the Koopmans' theorem and relaxation energy (R). The variation of the ionization energy (-epsilon(i)) parallels closely to that of CEBE(i). The relaxation energy curve does not follow the CEBE curve. The behavior of CEBE in a molecule M depends almost exclusively upon the electronic structure of its neutral parent molecule M, and not upon its core-ionized cation M+. The substituent effect in the sigma-system is considered as inductive effect. The substituent effect in the pi-system consists of inductive and resonant/pi-electron effects. Assuming that the inductive effect of the pi-system, 1-X-hexatriene, can be approximated by that of the sigma-systems, 1-X-hexane, resonant effect of the pi-system was estimated.
机译:结果表明,核电子结合能(CEBE)是监测取代正己烷(1-X-己烷),链sigma系统和取代正n-烷烃中每个碳原子上取代基作用的非常方便的量己三烯(1-X-己三烯),链pi系统。使用密度泛函理论,通过以下公式计算核电子结合能:ΔE-KS(PW86-PW91)/ TZP + C-ret // HF / 6-31G *计算出的第i个轨道的CEBE(i)等于因库普曼定理和弛豫能(R)而引起的电离能(-ε(i))之和。电离能的变化(-ε(i))与CEBE(i)的变化非常相似。弛豫能量曲线不遵循CEBE曲线。 CEBE在分子M中的行为几乎完全取决于其中性母体分子M的电子结构,而不取决于其核心离子阳离子M +。 σ系统中的取代基效应被认为是感应效应。 π-系统中的取代基效应包括感应效应和共振/π电子效应。假设pi系统1-X-己三烯的感应效应可以近似于sigma系统1-X-己烷的感应效应,估计了pi系统的共振效应。

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