首页> 外文期刊>The Journal of Chemical Physics >Calculation of excitation energies of open-shell molecules with spatially degenerate ground states. I. Transformed reference via an intermediate configuration Kohn-Sham density-functional theory and applications to d(1) and d(2) systems with octahedr
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Calculation of excitation energies of open-shell molecules with spatially degenerate ground states. I. Transformed reference via an intermediate configuration Kohn-Sham density-functional theory and applications to d(1) and d(2) systems with octahedr

机译:计算具有空间简并基态的开壳分子的激发能。 I.通过中间配置的Kohn-Sham密度泛函理论转换参考,并将其应用于具有八面体的d(1)和d(2)系统

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A method for calculating the UV-vis spectra of molecules with spatially degenerate ground states using time-dependent density-functional theory (TDDFT) is proposed. The new transformed reference via an intermediate configuration Kohn-Sham TDDFT (TRICKS-TDDFT) method avoids the difficulties caused by the multireference nature of spatially degenerate states by rather than utilizing the ground state instead taking a nondegenerate excited state with desirable properties as the reference for the TDDFT calculation. The scope and practical application of the method are discussed. Like all open-shell TDDFT calculations this method at times suffers from the inability to produce transitions to states that are eigenfunctions of the total spin operator. A technique for alleviating this difficulty to some extent is proposed. The applicability and accuracy of the TRICKS-TDDFT method is demonstrated through example calculations of several d(1) and d(2) transition metal complexes with tetrahedral and octahedral symmetries. For the most part, the results of these calculations are similar in quality to to those obtained from standard TDDFT calculations. (c) 2005 American Institute of Physics.
机译:提出了一种使用时变密度泛函理论(TDDFT)计算具有空间简并基态分子的紫外可见光谱的方法。通过中间配置Kohn-Sham TDDFT(TRICKS-TDDFT)方法的新变换参考避免了空间退化状态的多参考性质所引起的困难,而不是利用基态,而是采用具有理想特性的非退化激发态作为参考。 TDDFT计算。讨论了该方法的范围和实际应用。像所有开放式TDDFT计算一样,此方法有时会无法生成到作为自旋算子的本征函数的状态的跃迁。提出了在某种程度上减轻这种困难的技术。通过对具有四面体和八面体对称性的几种d(1)和d(2)过渡金属配合物的实例计算,论证了TRICKS-TDDFT方法的适用性和准确性。在大多数情况下,这些计算的结果在质量上与从标准TDDFT计算获得的结果相似。 (c)2005年美国物理研究所。

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