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首页> 外文期刊>International Journal of Quantum Chemistry >Adiabatic Potentia Analysis for Some Carbon-Containing Molecules
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Adiabatic Potentia Analysis for Some Carbon-Containing Molecules

机译:某些含碳分子的绝热电位分析

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In the current article,the procedure to separate a molecule into the ion radicals and bonds,proposed earlier by one of authors within the Hartree-Fock(HF)approach,is used.In this procedure the ion-radical-occupied orbitals are defined as solutions of HF equations for ion radical in the basis of occupied molecular orbital(MO)of the whole molecule.The bond orbitals are constructed to complete the functional space span by the occupied MO of ion radicals to the functional space span by occupied MO of the whole molecule.In this approach it is easy to calculate the electron density of all ion radicals and bonds,which add up to the total electron density of the whole molecule,the densities overlap being taken into account.Hence,the adiabatic potential of the molecule is expressed as a sum of ion radicals and bonds self-energies and of various intramolecular interaction energies.The results of ab initio adiabatic potential calculations and its decomposition for several carbon-containing molecules,such as CH_4,CH_3Li,CH_3F,and C_2h_6,Which can be considered as two ion radicals connected by a single chemical bond,are presented here.The dependence of adiabatic potential components on the bond length is analyzed,and simple approximate equations for them are generated.In addition,the electronic structure of ion-radical CH_3~+,common for all molecules calculated here,is considered,and its dependence on the molecular environment is analyzed.
机译:在当前文章中,使用了Hartree-Fock(HF)方法中一位作者较早提出的将分子分离成离子自由基和键的过程。在此过程中,离子自由基占据的轨道定义为在整个分子的占据分子轨道(MO)的基础上建立离子自由基的HF方程的解。建立键轨道,以完成离子自由基的占据MO的功能空间跨度到分子自由基的占据MO的功能空间跨度这种方法很容易计算所有离子自由基和键的电子密度,这加起来就是整个分子的总电子密度,因此要考虑密度的重叠。因此,分子的绝热势能表示为离子自由基和键的自能之和以及各种分子内相互作用能的总和。从头算绝热势的计算结果及其对几种含碳分子的分解这里介绍了CH_4,CH_3Li,CH_3F和C_2h_6这两个可以看作是通过单个化学键连接的离子基团。分析了绝热势分量对键长的依赖性,并给出了简单的近似方程此外,还考虑了此处计算出的所有分子所共有的离子自由基CH_3〜+的电子结构,并分析了其对分子环境的依赖性。

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