首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Quantum mechanical investigation of the inner-sphere reorganization energy of cyclooctatetraene/cyclooctatetraene radical anion. Part I
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Quantum mechanical investigation of the inner-sphere reorganization energy of cyclooctatetraene/cyclooctatetraene radical anion. Part I

机译:环辛酸酯/环辛酸酯基阴离子的内球重组能的量子力学研究。第一部分

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The inner-sphere reorganization energy of the electron self-exchange of the couple cyclooctatetraene/cyclooctatetraene radical anion has been investigated by quantum mechanical calculations. The more stable Jahn Teller distorted B-2g conformation of the radical anion has been used in this study. Two different theories have been applied in this first part, The harmonic approximation in the classical Marcus scheme has been modified by using projected force constants, which are obtained from the complete force constant matrix and the geometry changes of the molecule during the ET (introduced by Mikkelsen). A different approach (introduced by Nelsen) combines the different energies of the neutral and radical anion with and without relaxation corresponding to the vertical ionization potential and the vertical electron affinity. The electronic energies of the neutral molecule and the radical anion differ dramatically applying three different levels of quantum mechanical calculations (UAM1, UB3LYP, PMP2 with three different basis sets with and without diffuse functions). Nevertheless the Nelsen method gives almost consistent results for the inner-sphere reorganization energies: 120.1 kJ/mol for semiempirical UAM1 method, 159.3 kJ/mol, 156.4 kJ/mol and 158.3 kJ/mol for density functional UB3LYP/6-3lG*, UB3LYP/6-31++G* and UB3LYP/AUG-cc-pVDZ calculations and 192.5 kJ/mol for ab-initio PMP2/6-31G* investigations, respectively. These values are in agreement with earlier experimental work supposing the total reorganization energy to be larger than 38 kcal/mot assuming an electron self-exchange rate of 10(4) M(-1)s(-1). The simple harmonic approximation of Marcus relation has not yet been applied for a molecule like cyclooctatetraene with large torsional geometry changes. Using the projected force constants after scaling, considerably different results for the inner-sphere reorganization energy have been calculated: 738.1 kJ/mol for the UB3LYP/6-31G*, 743.3 kJ/mol for UB3LYP/6-31++G* and 759.1 kJ/mol for UB3LYP/AUG-cc-pVDZ level of theory. Comparison with our concentration dependent EPR experiments are controversial to the earlier experimental results, but the latter supports the assumption that the electron self-exchange occurs in a time scale so that the molecules cannot complete their vibrational motions. Therefore the projected Marcus relation is not valid for cyclooctatetraene/cyclooctatetraene radical anion including a large torsional change during the electron transfer. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 48]
机译:通过量子力学计算研究了环辛酸酯/环辛酸酯/对自由基阴离子对电子自交换的内球重组能。这项研究使用了更稳定的Jahn Teller扭曲的自由基阴离子B-2g构象。在第一部分中应用了两种不同的理论,经典Marcus方案中的谐波近似已通过使用投影力常数进行了修改,该力常数是从完整的力常数矩阵和ET期间分子的几何变化获得的(由Mikkelsen)。一种不同的方法(由Nelsen引入)结合了中性和自由基阴离子的不同能量(有和没有松弛),分别对应于垂直电离电势和垂直电子亲和力。应用三种不同级别的量子力学计算(UAM1,UB3LYP,PMP2,具有和不具有扩散功能的三个不同基集),中性分子和自由基阴离子的电子能量显着不同。尽管如此,内尔森法对内球的重组能量给出了几乎一致的结果:半经验UAM1方法为120.1 kJ / mol,密度函数型UB3LYP / 6-3lG *,UB3LYP为159.3 kJ / mol,156.4 kJ / mol和158.3 kJ / mol / 6-31 ++ G *和UB3LYP / AUG-cc-pVDZ计算值,以及从头开始PMP2 / 6-31G *研究的192.5 kJ / mol。这些值与较早的实验工作一致,假定电子的自交换率为10(4)M(-1)s(-1),则总重组能大于38 kcal / mot。 Marcus关系的简单谐波近似尚未应用于具有较大扭转几何形状变化的分子,例如环辛酸酯。使用缩放后的预计力常数,已计算出不同的内球重组能量结果:UB3LYP / 6-31G *为738.1 kJ / mol,UB3LYP / 6-31 ++ G *为743.3 kJ / mol和UB3LYP / AUG-cc-pVDZ理论水平为759.1 kJ / mol。与我们的依赖浓度的EPR实验进行比较与较早的实验结果存在争议,但后者支持以下假设:电子自交换发生在时间范围内,因此分子无法完成其振动运动。因此,投影的马库斯关系不适用于在电子传输过程中包括大的扭转变化的环辛酸酯/环辛酸酯基阴离子。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:48]

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