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首页> 外文期刊>The Journal of Chemical Physics >Electronic transfer dynamics for bridged binuclear mixed-valence compounds: Density functional theory study on electronic structure in the ground state for the Creutz-Taube ion under asymmetric distortions
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Electronic transfer dynamics for bridged binuclear mixed-valence compounds: Density functional theory study on electronic structure in the ground state for the Creutz-Taube ion under asymmetric distortions

机译:桥联双价化合物的电子转移动力学:不对称变形下Creutz-Taube离子基态电子结构的密度泛函理论研究

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摘要

In order to explore the dynamic problem of the electronic structure in the ground state for the Creutz-Taube ion, the calculations on the electronic potential surfaces along the totally symmetric vibrational difference coordinate of the Ru-N stretch and the net charge distribution on the Ru atoms are carried out by using the density functional theory in the two schemes with or without the Ru-N(pyz) vibration. It is shown that the vibration associated with the totally symmetric vibrational difference coordinate Q_ can be regarded as a harmonic oscillation with 123.16 eV A~(-1) of the force constant, and 430 cm~(-1) of the fundamental frequency is obtained on the basis of the five-body vibrator model. From the electronic structure calculated in the ground state it is concluded that the asymmetric net distribution on the Ru atoms in the Creutz-Taube ion occurs in the vibration associated with the totally symmetric vibrational difference coordinate, and the charge transfer between the Ru atoms and the ligands is responsible for the asymmetric charge distribution. The total symmetric vibrations of Ru-N for the related monomer [(NH_3)_5Ru(pyz)]~(2+/3+) are further examined. It is found that the reduction of Ru(III) to Ru(II) corresponds to 0.05 A of the difference in Ru-N distance between the two Ru-subunits under the asymmetric distortion and to 0.012 eV of the potential energy over the zero point energy, which is comparable with kT. The Born-Oppenheimer approximation and the neglected coupling effect between the electronic and nuclear motion in the present paper are briefly discussed.
机译:为了探讨Creutz-Taube离子在基态下的电子结构的动力学问题,计算了沿Ru-N拉伸的完全对称振动差分坐标和Ru上的净电荷分布的电势面在有或没有Ru-N(pyz)振动的情况下,使用密度泛函理论在两种方案中进行原子原子化。结果表明,与全对称振动差分坐标Q_关联的振动可以看作是力常数为123.16 eVA(〜-1)的谐波振荡,而基频为430 cm〜(-1)。在五体振动器模型的基础上。从基态计算的电子结构可以得出结论,Creutz-Taube离子中Ru原子上的不对称净分布发生在与完全对称的振动差坐标相关的振动中,并且Ru原子与原子之间的电荷转移配体负责不对称的电荷分布。进一步研究了相关单体[(NH_3)_5Ru(pyz)]〜(2 + / 3 +)的Ru-N的总对称振动。发现Ru(III)还原为Ru(II)对应于非对称畸变下两个Ru亚基之间Ru-N距离的差异0.05 A和零点处的势能0.012 eV能量,与kT相当。简要讨论了Born-Oppenheimer逼近以及电子运动与核运动之间被忽略的耦合效应。

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