首页> 外文期刊>Journal of chemical theory and computation: JCTC >Low-Lying Electromeric States in Chloro-Ligated Iron(IV)-Oxo Porphyrin as a Model for Compound I, Studied with Second-Order Perturbation Theory Based on Density Matrix Renormalization Group
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Low-Lying Electromeric States in Chloro-Ligated Iron(IV)-Oxo Porphyrin as a Model for Compound I, Studied with Second-Order Perturbation Theory Based on Density Matrix Renormalization Group

机译:氯连接的铁(IV) - 过氧卟啉中的低位电烙物质作为化合物I的模型,用基于密度矩阵重整化组的二阶扰动理论研究

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Employing second-order perturbation theory based on the density matrix renormalization group (DMRG-CASPT2), this work aims at providing a quantitative description of the spin state energetics of a chloro-ligated iron(IV)-oxo porphyrin as a model for the cytochromes P450 active species, also known as compound I (Cpd I). We explored DMRG-CASPT2 to its full extent with an extensive active space (up to 31 active orbitals) as well as a large number of renormalized states m (up to 10000). Different flavors of DMRG-CASPT2, using either the costly exact 4-particle reduced density matrix (4-RDM) or the cheaper cumulant approximated 4-RDM (cu(4)), were analyzed. All flavors essentially converge to similar relative energies between different spin states. Including a correction for the protein environment, we found a quartet FeIVO ground state and, more importantly, a thermally accessible doublet FeVO excited state that might directly contribute to the reactivity of this iron-oxo species. Our results also showed that cheaper approaches, such as CASPT2 based on a smaller active space or the cumulant approximation DMRG-cu(4)-CASPT2, are capable of accurately describing the spin state energetics of this species.
机译:采用基于密度矩阵重整化组(DMRG-CASPT2)的二阶扰动理论,该作品旨在提供氯连接铁(IV)-Oxo卟啉的旋转状态能量的定量描述,作为细胞变色的模型P450活性物种,也称为化合物I(CPD i)。我们探讨了DMRG-CASPT2的全部范围广泛的有效空间(最多31个有效轨道)以及大量的重字态M(最多10000)。分析了DMRG-CASPT2的不同口味,分析了昂贵的精确4粒子减小密度基质(4-RDM)或更便宜的累积近似4-RDM(Cu(4))。所有口味基本上都会收敛到不同自旋状态之间的相似性能量。包括对蛋白质环境的校正,我们发现了一种四重奏的Feivo地面状态,更重要的是,可以直接有助于这种铁氧诺物种的反应性导致热可接近的双重的双重激发状态。我们的结果还表明,基于较小的有效空间或累积近似DMRG-CU(4)-CASPT2的诸如CASPT2的更便宜的方法能够准确地描述该物种的旋转状态能量。

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