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阳离子[Re]-Cn-[Re]配合物中自旋态能量分裂和局域自旋的理论研究

Theoretical study on the spin-state energy splittings and local spin in cationic [Re]-Cn-[Re] complexes.

作者信息

Herrmann Carmen, Neugebauer Johannes, Gladysz John A, Reiher Markus

机构信息

Institut für Physikalische Chemie, Friedrich-Schiller-Universität Jena, Helmholtzweg 4, D-07743 Jena, Germany.

出版信息

Inorg Chem. 2005 Sep 5;44(18):6174-82. doi: 10.1021/ic050240l.

Abstract

Total spin-state energy splittings are calculated for mono- and dications of the formula {[Re]-Cn-[Re]}z+ where [Re] = eta5-(C5Me5)Re(NO)(PPh3). Cn is an even-numbered carbon chain with n ranging from 4 to 20, and z is 1 or 2. These complexes are experimentally known, and their potential role as molecular electronic devices initiated this work. We have considered the different total spin states monocation/doublet, monocation/quartet, dication/singlet, and dication/triplet. Data obtained for two density functionals BP86 and B3LYP were compared to verify the internal consistency of the results. In both ionization states, the low-spin state is the ground state, but the spin-state splittings decrease as the chain gets longer. For the dications, the splitting reaches a nearly constant value of about 10 kJ/mol with BP86 and about 4 kJ/mol with B3LYP when there are at least 14 carbon atoms in the chain, whereas for the monocations, no constant value appears to be reached asymptotically, not even if 20 carbon atoms are in the chain. For monocations, the splittings range from 138 kJ/mol (n = 4) to 68 kJ/mol (n = 20) with BP86 and from 134 kJ/mol (n = 4) to 73 kJ/mol (n = 20) with B3LYP and are thus considerably higher than those of the dications. The spin-state splittings are qualitatively mirrored by the energy splitting between the highest-occupied molecular orbital with beta spin (HOMObeta) and the lowest-unoccupied molecular orbital with alpha spin (LUMOalpha) as obtained in the low-spin state. Furthermore, the HOMOalpha-LUMOalpha gaps decrease as the carbon chain lengthens. In addition, the local distribution of the ŝz expectation value is analyzed for the monocation/doublet, the monocation/quartet, and the dication/triplet state using a modified Löwdin partitioning scheme. In the monocation/doublet and the dication/triplet state, the electron spin is distributed mainly on the metal centers and slightly delocalized onto the carbon chain. In the monocation/quartet state for chain lengths of more than 8 carbon atoms, the electron spin is mainly localized on selected atoms of the chain and not on the metal centers. In all cases, the spin delocalization onto the chain increases as the chain gets longer.

摘要

计算了通式为{[Re]-Cn-[Re]}z+的单阳离子和双阳离子的总自旋态能量分裂,其中[Re] = η5-(C5Me5)Re(NO)(PPh3)。Cn是偶数碳链,n范围为4至20,z为1或2。这些配合物是已知的实验对象,它们作为分子电子器件的潜在作用引发了这项工作。我们考虑了不同的总自旋态:单阳离子/二重态、单阳离子/四重态、双阳离子/单重态和双阳离子/三重态。比较了两种密度泛函BP86和B3LYP获得的数据,以验证结果的内部一致性。在两种电离态下,低自旋态均为基态,但自旋态分裂随着链长的增加而减小。对于双阳离子,当链中至少有14个碳原子时,BP86计算的分裂达到约10 kJ/mol的近恒定值,B3LYP计算的值约为4 kJ/mol;而对于单阳离子,即使链中有20个碳原子,似乎也没有渐近地达到恒定值。对于单阳离子,BP86计算的分裂范围为138 kJ/mol(n = 4)至68 kJ/mol(n = 20),B3LYP计算的范围为134 kJ/mol(n = 4)至73 kJ/mol(n = 20),因此比双阳离子的分裂值高得多。自旋态分裂在定性上反映了低自旋态下具有β自旋的最高占据分子轨道(HOMObeta)和具有α自旋的最低未占据分子轨道(LUMOalpha)之间的能量分裂。此外,随着碳链的延长,HOMOalpha-LUMOalpha能隙减小。此外,使用改进的洛丁(Löwdin)划分方案分析了单阳离子/二重态、单阳离子/四重态和双阳离子/三重态的ŝz期望值的局部分布。在单阳离子/二重态和双阳离子/三重态中,电子自旋主要分布在金属中心,并略微离域到碳链上。对于链长超过8个碳原子的单阳离子/四重态,电子自旋主要定域在链上的选定原子上,而不是在金属中心上。在所有情况下,随着链长的增加,自旋在链上的离域增加。

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