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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Performance of CASPT2 and DFT for Relative Spin-State Energetics of Heme Models
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Performance of CASPT2 and DFT for Relative Spin-State Energetics of Heme Models

机译:血红素模型相对自旋态能量的CASPT2和DFT性能

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摘要

The accuracy of the relative spin-state energetics of three small Fe~(II) or Fe~(III) heme models from multiconfigurational perturbation theory (CASPT2) and density functional theory with selected functionals (including the recently developed M06 and M06-L functionals) was assessed by comparing with recently available coupled cluster results. While the CASPT2 calculations of spin-state energetics were found to be very accurate for the studied Fe~(III)complexes (including FeP(SH), a model of the active site of cytochrome P450 in its resting state), there is a strong indication of a systematic error (around 5 kcal/mol) in favor of the high-spin state for the studied Fe" complexes (including FeP(lm), a model of the active site of myoglobin). A larger overstabilization of the high-spin states was observed for the M06 and M06-L functionals, up to 22 and 11 kcal/mol, respectively. None of the tested density functionals consistently provides a better accuracy than CASPT2 for all model complexes.
机译:三种小Fe〜(II)或Fe〜(III)血红素模型的相对自旋态能量的准确性来自多配置扰动理论(CASPT2)和具有选定功能的密度泛函理论(包括最近开发的M06和M06-L泛函通过与最近可用的耦合聚类结果进行比较来评估)。虽然发现对于所研究的Fe〜(III)配合物(包括FeP(SH),它是静止状态下细胞色素P450活性位点的模型),自旋态能量的CASPT2计算非常准确。表明系统误差(约5 kcal / mol)有利于研究的Fe“配合物(包括FeP(lm),肌红蛋白活性位点的模型)的高自旋态。 M06和M06-L官能团的自旋态分别达到22 kcal / mol和11 kcal / mol,在所有模型配合物中,没有一个经过测试的密度官能团始终如一地提供比CASPT2更好的精度。

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