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开壳层体系的含时密度泛函理论/离散反应场光谱:水溶液中[FeIII(PyPepS)2]-的可见光谱。

Time-dependent density functional theory/discrete reaction field spectra of open shell systems: The visual spectrum of [FeIII(PyPepS)2]- in aqueous solution.

作者信息

van Duijnen Piet Th, Greene Shannon N, Richards Nigel G J

机构信息

Department of Chemistry, University of Florida, Gainesville, Florida 32611-7200, USA.

出版信息

J Chem Phys. 2007 Jul 28;127(4):045105. doi: 10.1063/1.2751164.

Abstract

We report the calculated visible spectrum of [FeIII(PyPepS)2]- in aqueous solution. From all-classical molecular dynamics simulations on the solute and 200 water molecules with a polarizable force field, 25 solute/solvent configurations were chosen at random from a 50 ps production run and subjected the systems to calculations using time-dependent density functional theory (TD-DFT) for the solute, combined with a solvation model in which the water molecules carry charges and polarizabilities. In each calculation the first 60 excited states were collected in order to span the experimental spectrum. Since the solute has a doublet ground state several excitations to states are of type "three electrons in three orbitals," each of which gives rise to a manifold of a quartet and two doublet states which cannot properly be represented by single Slater determinants. We applied a tentative scheme to analyze this type of spin contamination in terms of Delta and Delta transitions between the same orbital pairs. Assuming the associated states as pure single determinants obtained from restricted calculations, we construct conformation state functions (CFSs), i.e., eigenfunctions of the Hamiltonian Sz and S2, for the two doublets and the quartet for each Delta,Delta pair, the necessary parameters coming from regular and spin-flip calculations. It appears that the lower final states remain where they were originally calculated, while the higher states move up by some tenths of an eV. In this case filtering out these higher states gives a spectrum that compares very well with experiment, but nevertheless we suggest investigating a possible (re)formulation of TD-DFT in terms of CFSs rather than determinants.

摘要

我们报告了水溶液中[FeIII(PyPepS)2]-的计算可见光谱。通过对溶质和200个水分子进行全经典分子动力学模拟,并采用可极化力场,从50皮秒的生产运行中随机选择了25种溶质/溶剂构型,并使用含时密度泛函理论(TD-DFT)对溶质进行计算,同时结合一种溶剂化模型,其中水分子带有电荷和极化率。在每次计算中,收集前60个激发态以涵盖实验光谱。由于溶质具有双重基态,几个到态的激发属于“三个轨道中的三个电子”类型,其中每个激发都会产生一个四重态和两个双重态的多重态,这些多重态不能用单个斯莱特行列式恰当地表示。我们应用了一种试探性方案,根据相同轨道对之间的Δ和Δ跃迁来分析这种自旋污染类型。假设相关态为从受限计算中获得的纯单行列式,我们为每个Δ、Δ对的两个双重态和四重态构建构象态函数(CFS),即哈密顿量Sz和S2的本征函数,必要参数来自正则和自旋翻转计算。结果表明,较低的终态保持在其最初计算的位置,而较高的态则上升了十分之几电子伏特。在这种情况下,滤除这些较高的态会得到一个与实验非常吻合的光谱,但尽管如此,我们建议研究根据CFS而不是行列式对TD-DFT进行可能的(重新)表述。

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