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首页> 外文期刊>International Journal of Quantum Chemistry >Spin Crossover in Fe(II) Complexes: An Ab Initio Study of Ligand σ-Donation
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Spin Crossover in Fe(II) Complexes: An Ab Initio Study of Ligand σ-Donation

机译:Fe(II)配合物中的自旋交叉:配体σ捐赠的从头算研究。

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The relative stability of high-spin and low-spin states has been studied in a series of Fe(II) complexes with model ligands of different σ donation strength. The natural (delocalized) orbitals are transformed to atomic-like orbitals to analyze the multiconfigurational wave function in a valence bond picture. This analysis reveals a direct relation between the stabilization of the low-spin state and the importance of the ligand-to-metal charge transfer in the σ orbitals. The multiconfigurational second-order perturbation theory (CASPT2) energy dependence of the low-spin state as function of the Fe-ligand distance deviates significantly from coupled cluster (CCSD(T)) calculations. This is ascribed to the intrinsic multiconfigurational character of the wave function of the low-spin state, invalidating the use of the simple closed-shell reference in the coupled cluster calculations.
机译:在具有不同σ捐赠强度的模型配体的一系列Fe(II)配合物中,研究了高自旋和低自旋态的相对稳定性。将自然(非定域)轨道转换为类似原子的轨道,以分析价键图中的多构型波函数。该分析揭示了低自旋态的稳定与σ轨道中配体向金属的电荷转移的重要性之间的直接关系。低自旋态的多构型二阶摄动理论(CASPT2)的能量依赖性与铁配体距离的函数显着偏离了耦合簇(CCSD(T))计算。这归因于低旋转状态的波动函数的固有多配置特征,这使得在耦合聚类计算中使用简单的闭壳参考无效。

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